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hi all I managed to plot momentum distribution for x1+, but not for n1 |
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HI @lmaraf by default lightest neutralino is treated as invisible in ma5. You need to reset |
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Hi
I still can't plot n1 and x1+ in this process:
generate p p > x1+ n1
using the import model MSSM_SLHA2
many thanks
Il martedì 8 febbraio 2022, 09:16:16 CET, Jack Y. Araz ***@***.***> ha scritto:
HI @lmaraf by default lightest neutralino is treated as invisible in ma5. You need to reset invisible keyword in normal mode without neutralino and then you can define a new particle named n1 which is then should be accessible through plot command.
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HiI am using madgraph indeed, with madanalysis automatically called (I installed madanalysis 5 in madgraph 5)I am just trying to generate a process using MSSM_SLHA2 particles and plotting the results
the commands are only:
install pythia8install MadAnalysis5import model MSSM_SLHA2
generate p p > x1+ n1output test_modellaunch test_model
many thanksLorenzo
Il martedì 8 febbraio 2022, 18:24:40 CET, Jack Y. Araz ***@***.***> ha scritto:
Hi @lmaraf, could you elaborate on what you are doing. The commands that you are providing are for madgraph software not madanalysis 5. These are completely separate packages developed by different people. Hence if you can provide the commands that you are using for madanalysis, it would be much easier to help.
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this is the madanalysis5_parton_card.dat
@MG5aMC stdout_lvl=INFO
@MG5aMC inputs = ***@***.*** analysis_name = analysis1
# Histogram drawer (options: matplotlib or root)
set main.graphic_render = root
NOTE: these plots are visible
# Global event variablesplot THT 40 0 500 [logY]plot MET 40 0 500 [logY]plot SQRTS 40 0 500 [logY]# PT and ETA distributions of all particlesplot PT(x1+[1]) 40 0 500 [logY]plot ETA(x1+[1]) 40 -10 10 [logY]
NOTE2: these are not visible, don't appear in the produced analysis#neutralinos
plot PT(n1) 40 0 500 [logY]plot ETA(n1) 40 -10 10 [logY]# Invisibleplot MT_MET(x1+[1] n1) 40 0 500 [logY]
thanks again
Il martedì 8 febbraio 2022, 18:36:10 CET, Jack Y. Araz ***@***.***> ha scritto:
You need to tell madanalysis to plot what you are looking for. so far from what you wrote the only thing that I can see you are doing is installing pythia and madanalysis then importing MSSM, generating chargino neutralino production and launching the session. You are not providing a single information regarding plotting of any kind. You need to modify the madanalysis card which is provided in the madgraph session. Without that you are not telling anything to madanalysis to do, hence its only creating a set of default plots which may or may not include what you want/need.
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I defined n1but now, if I don't exclude heavysusy particles, I get these three plots all equal:
plot MET 40 0 500 [logY]
plot PT(x1+) 40 0 500 [logY]
plot PT(n1) 40 0 500 [logY]
many thanks again
Lorenzo Marafatto
Il martedì 8 febbraio 2022, 18:46:20 CET, Jack Y. Araz ***@***.***> ha scritto:
Have you tried defining n1? as I said above, neutralino is by default invisible particle. You need to redefine invisible keyword and then define a new keyword for neutralino only. You can find details in the documentation.
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Hi
I tried these commands but I still get three equals plots
is this the correct file for events produced in madgraph: unweighted_events.lhe.gz?
thanks againLorenzo
Il mercoledì 9 febbraio 2022, 13:32:24 CET, Jack Y. Araz ***@***.***> ha scritto:
hi could you please try using standalone madanalysis with the following commands and let me know what you get;
$ cd madanalysis5
$ ./bin/ma5
ma5> import /PATH/TO/YOUR/LHE/FILE/*.lhe.gz as my_sample
ma5> set my_sample.xsection = <xsection value>
ma5> define x1 = 1000024 -1000024
ma5> define n1 = 1000022
ma5> plot MET
ma5> plot PT (x1[1])
ma5> plot PT (n1[1])
ma5> submit
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here they aresorry for disturbing so much...thanksLorenzo
Il mercoledì 9 febbraio 2022, 16:13:54 CET, Jack Y. Araz ***@***.***> ha scritto:
Yes, LHE is particle level event file. could you please share 10 events so that I can try to reproduce your results.
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here they arefile was too bigsorry
Il mercoledì 9 febbraio 2022, 16:23:27 CET, Jack Y. Araz ***@***.***> ha scritto:
there is no file attached to this post
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okso I copy here in the following:
<event>
4 1 +1.3980101e-02 1.86533800e+02 7.81653100e-03 1.18672100e-01
-1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +7.4508836946e+00 7.4508836946e+00 0.0000000000e+00 0.0000e+00 1.0000e+00
2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -2.9939017919e+03 2.9939017919e+03 0.0000000000e+00 0.0000e+00 -1.0000e+00
1000024 1 1 2 0 0 -3.1441852592e+01 +2.8153905938e+01 -2.1930153426e+03 2.2009341525e+03 1.8169650000e+02 0.0000e+00 -1.0000e+00
1000022 1 1 2 0 0 +3.1441852592e+01 -2.8153905938e+01 -7.9343556559e+02 8.0041852311e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.16176297E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="2"> 1 2 0.46059980E+00 0.18653378E+03</pdfrwt>
<pdfrwt beam="1"> 1 -1 0.11462910E-02 0.18653378E+03</pdfrwt>
<totfact> 0.37178932E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 1.92412800e+02 7.81653100e-03 1.17848400e-01
-1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +1.9246723430e+01 1.9246723430e+01 0.0000000000e+00 0.0000e+00 1.0000e+00
2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -1.2539178843e+03 1.2539178843e+03 0.0000000000e+00 0.0000e+00 -1.0000e+00
1000024 1 1 2 0 0 +1.6773626563e+01 +6.1055081581e+01 -6.8733769856e+02 7.1376173021e+02 1.8169650000e+02 0.0000e+00 1.0000e+00
1000022 1 1 2 0 0 -1.6773626563e+01 -6.1055081581e+01 -5.4733346230e+02 5.5940287751e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.16939158E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="2"> 1 2 0.19291049E+00 0.19241283E+03</pdfrwt>
<pdfrwt beam="1"> 1 -1 0.29610336E-02 0.19241283E+03</pdfrwt>
<totfact> 0.80481089E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 1.97338900e+02 7.81653100e-03 1.17217400e-01
-3 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +1.3363188123e+02 1.3363188123e+02 0.0000000000e+00 0.0000e+00 1.0000e+00
4 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -1.9319848396e+02 1.9319848396e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00
1000024 1 1 2 0 0 -4.1977160434e+01 +6.4551725020e+01 -2.8528084912e+01 1.9939026291e+02 1.8169650000e+02 0.0000e+00 1.0000e+00
1000022 1 1 2 0 0 +4.1977160434e+01 -6.4551725020e+01 -3.1038517824e+01 1.2744010228e+02 9.6688070000e+01 0.0000e+00 -1.0000e+00
<mgrwt>
<rscale> 0 0.17555626E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="2"> 1 4 0.29722843E-01 0.19733886E+03</pdfrwt>
<pdfrwt beam="1"> 1 -3 0.20558751E-01 0.19733886E+03</pdfrwt>
<totfact> 0.48085431E+02</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 1.84111600e+02 7.81653100e-03 1.19039000e-01
2 -1 0 0 501 0 +0.0000000000e+00 +0.0000000000e+00 +5.1674296451e+02 5.1674296451e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00
-1 -1 0 0 0 501 -0.0000000000e+00 -0.0000000000e+00 -4.0817799058e+01 4.0817799058e+01 0.0000000000e+00 0.0000e+00 1.0000e+00
1000024 1 1 2 0 0 -1.9247445311e+01 +2.2649312046e+01 +3.5503070108e+02 3.9992983423e+02 1.8169650000e+02 0.0000e+00 -1.0000e+00
1000022 1 1 2 0 0 +1.9247445311e+01 -2.2649312046e+01 +1.2089446437e+02 1.5763092934e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.15850979E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="1"> 1 2 0.79498913E-01 0.18411158E+03</pdfrwt>
<pdfrwt beam="2"> 1 -1 0.62796618E-02 0.18411158E+03</pdfrwt>
<totfact> 0.82869965E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 3.42044300e+02 7.81653100e-03 1.07002900e-01
-1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +8.0878249745e+01 8.0878249745e+01 0.0000000000e+00 0.0000e+00 1.0000e+00
2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -1.4517620585e+03 1.4517620585e+03 0.0000000000e+00 0.0000e+00 -1.0000e+00
1000024 1 1 2 0 0 +2.4636841534e+02 -1.5258851803e+02 -9.7053765791e+02 1.0290469452e+03 1.8169650000e+02 0.0000e+00 -1.0000e+00
1000022 1 1 2 0 0 -2.4636841534e+02 +1.5258851803e+02 -4.0034615082e+02 5.0359336301e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.33251706E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="2"> 1 2 0.22334801E+00 0.34204425E+03</pdfrwt>
<pdfrwt beam="1"> 1 -1 0.12442808E-01 0.34204425E+03</pdfrwt>
<totfact> 0.71048314E+02</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 1.86750800e+02 7.81653100e-03 1.18640100e-01
2 -1 0 0 501 0 +0.0000000000e+00 +0.0000000000e+00 +8.2154263814e+02 8.2154263814e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00
-1 -1 0 0 0 501 -0.0000000000e+00 -0.0000000000e+00 -2.6320062038e+01 2.6320062038e+01 0.0000000000e+00 0.0000e+00 1.0000e+00
1000024 1 1 2 0 0 -4.2745536019e+01 +5.9204532764e+00 +5.4701513728e+02 5.7801506135e+02 1.8169650000e+02 0.0000e+00 -1.0000e+00
1000022 1 1 2 0 0 +4.2745536019e+01 -5.9204532764e+00 +2.4820743882e+02 2.6984763883e+02 9.6688070000e+01 0.0000e+00 -1.0000e+00
<mgrwt>
<rscale> 0 0.16205090E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="1"> 1 2 0.12639116E+00 0.18675077E+03</pdfrwt>
<pdfrwt beam="2"> 1 -1 0.40492409E-02 0.18675077E+03</pdfrwt>
<totfact> 0.92215989E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 1.85472400e+02 7.81653100e-03 1.18830600e-01
-1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +4.0271677119e+02 4.0271677119e+02 0.0000000000e+00 0.0000e+00 1.0000e+00
2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -5.4365229582e+01 5.4365229582e+01 0.0000000000e+00 0.0000e+00 -1.0000e+00
1000024 1 1 2 0 0 +7.4801586180e+00 -3.6475116466e+01 +1.7426599932e+02 2.5449684384e+02 1.8169650000e+02 0.0000e+00 -1.0000e+00
1000022 1 1 2 0 0 -7.4801586180e+00 +3.6475116466e+01 +1.7408554229e+02 2.0258515693e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.16034652E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="2"> 1 2 0.83638817E-02 0.18547238E+03</pdfrwt>
<pdfrwt beam="1"> 1 -1 0.61956424E-01 0.18547238E+03</pdfrwt>
<totfact> 0.24553166E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 1.83729500e+02 7.81653100e-03 1.19098500e-01
2 -1 0 0 501 0 +0.0000000000e+00 +0.0000000000e+00 +9.8454328963e+01 9.8454328963e+01 0.0000000000e+00 0.0000e+00 -1.0000e+00
-1 -1 0 0 0 501 -0.0000000000e+00 -0.0000000000e+00 -2.7757178615e+02 2.7757178615e+02 0.0000000000e+00 0.0000e+00 1.0000e+00
1000024 1 1 2 0 0 +2.3998303678e+01 -1.2923135714e+01 -1.5958333078e+01 1.8442129086e+02 1.8169650000e+02 0.0000e+00 -1.0000e+00
1000022 1 1 2 0 0 -2.3998303678e+01 +1.2923135714e+01 -1.6315912411e+02 1.9160482425e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.15798969E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="1"> 1 2 0.15146820E-01 0.18372954E+03</pdfrwt>
<pdfrwt beam="2"> 1 -1 0.42703351E-01 0.18372954E+03</pdfrwt>
<totfact> 0.23681942E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 1.92934700e+02 7.81653100e-03 1.17779200e-01
-1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +1.1460065535e+02 1.1460065535e+02 0.0000000000e+00 0.0000e+00 1.0000e+00
2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -2.3398135810e+02 2.3398135810e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00
1000024 1 1 2 0 0 -1.8236772297e+01 -6.2270477565e+01 -1.2845715409e+02 2.3178664929e+02 1.8169650000e+02 0.0000e+00 -1.0000e+00
1000022 1 1 2 0 0 +1.8236772297e+01 +6.2270477565e+01 +9.0764513348e+00 1.1679536416e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.17005342E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="2"> 1 2 0.35997132E-01 0.19293473E+03</pdfrwt>
<pdfrwt beam="1"> 1 -1 0.17630870E-01 0.19293473E+03</pdfrwt>
<totfact> 0.39657026E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 2.08338400e+02 7.81653100e-03 1.15955100e-01
-1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +5.3719270584e+02 5.3719270584e+02 0.0000000000e+00 0.0000e+00 1.0000e+00
2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -5.6634317192e+01 5.6634317192e+01 0.0000000000e+00 0.0000e+00 -1.0000e+00
1000024 1 1 2 0 0 +1.0169858844e+02 +6.9755707656e+00 +2.8920750299e+02 3.5643493007e+02 1.8169650000e+02 0.0000e+00 -1.0000e+00
1000022 1 1 2 0 0 -1.0169858844e+02 -6.9755707656e+00 +1.9135088566e+02 2.3739209296e+02 9.6688070000e+01 0.0000e+00 -1.0000e+00
<mgrwt>
<rscale> 0 0.18879693E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="2"> 1 2 0.87129722E-02 0.20833838E+03</pdfrwt>
<pdfrwt beam="1"> 1 -1 0.82645028E-01 0.20833838E+03</pdfrwt>
<totfact> 0.13138678E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 1.84469600e+02 7.81653100e-03 1.18983600e-01
4 -1 0 0 501 0 +0.0000000000e+00 +0.0000000000e+00 +1.6626641357e+02 1.6626641357e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00
-3 -1 0 0 0 501 -0.0000000000e+00 -0.0000000000e+00 -1.3399122830e+02 1.3399122830e+02 0.0000000000e+00 0.0000e+00 1.0000e+00
1000024 1 1 2 0 0 +1.5039234673e+01 -2.8093591477e+01 +6.1315274976e+01 1.9439292559e+02 1.8169650000e+02 0.0000e+00 -1.0000e+00
1000022 1 1 2 0 0 -1.5039234673e+01 +2.8093591477e+01 -2.9040089707e+01 1.0586471628e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.15899543E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="1"> 1 4 0.25579448E-01 0.18446964E+03</pdfrwt>
<pdfrwt beam="2"> 1 -3 0.20614035E-01 0.18446964E+03</pdfrwt>
<totfact> 0.62843270E+02</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 1.81987300e+02 7.81653100e-03 1.19376600e-01
2 -1 0 0 501 0 +0.0000000000e+00 +0.0000000000e+00 +8.5082992407e+02 8.5082992407e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00
-1 -1 0 0 0 501 -0.0000000000e+00 -0.0000000000e+00 -2.5939299422e+01 2.5939299422e+01 0.0000000000e+00 0.0000e+00 1.0000e+00
1000024 1 1 2 0 0 +4.7694116649e+00 +9.1119021956e+00 +3.7938093891e+02 4.2077225309e+02 1.8169650000e+02 0.0000e+00 1.0000e+00
1000022 1 1 2 0 0 -4.7694116649e+00 -9.1119021956e+00 +4.4550968575e+02 4.5599697041e+02 9.6688070000e+01 0.0000e+00 -1.0000e+00
<mgrwt>
<rscale> 0 0.15559115E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="1"> 1 2 0.13089689E+00 0.18198734E+03</pdfrwt>
<pdfrwt beam="2"> 1 -1 0.39906621E-02 0.18198734E+03</pdfrwt>
<totfact> 0.89972169E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 1.82091200e+02 7.81653100e-03 1.19359700e-01
-1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +3.9839627753e+01 3.9839627753e+01 0.0000000000e+00 0.0000e+00 1.0000e+00
2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -4.9874622563e+02 4.9874622563e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00
1000024 1 1 2 0 0 -4.6467902289e-01 +1.1973334508e+01 -2.6431330416e+02 3.2096529023e+02 1.8169650000e+02 0.0000e+00 1.0000e+00
1000022 1 1 2 0 0 +4.6467902289e-01 -1.1973334508e+01 -1.9459329372e+02 2.1762056316e+02 9.6688070000e+01 0.0000e+00 -1.0000e+00
<mgrwt>
<rscale> 0 0.15573538E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="2"> 1 2 0.76730191E-01 0.18209117E+03</pdfrwt>
<pdfrwt beam="1"> 1 -1 0.61291733E-02 0.18209117E+03</pdfrwt>
<totfact> 0.89349660E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 2.00113400e+02 7.81653100e-03 1.16881700e-01
2 -1 0 0 501 0 +0.0000000000e+00 +0.0000000000e+00 +8.0371544409e+02 8.0371544409e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00
-1 -1 0 0 0 501 -0.0000000000e+00 -0.0000000000e+00 -3.3569623721e+01 3.3569623721e+01 0.0000000000e+00 0.0000e+00 1.0000e+00
1000024 1 1 2 0 0 -7.1270073896e+01 -4.4185380448e+01 +4.9003907432e+02 5.2932379858e+02 1.8169650000e+02 0.0000e+00 1.0000e+00
1000022 1 1 2 0 0 +7.1270073896e+01 +4.4185380448e+01 +2.8010674605e+02 3.0796126922e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.17895655E+03</rscale>
<asrwt>0</asrwt>
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-1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +1.7199645819e+02 1.7199645819e+02 0.0000000000e+00 0.0000e+00 1.0000e+00
2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -1.3207380510e+02 1.3207380510e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00
1000024 1 1 2 0 0 +2.8143054636e+01 +4.7658857086e+01 +2.8736488066e+01 1.9210102041e+02 1.8169650000e+02 0.0000e+00 1.0000e+00
1000022 1 1 2 0 0 -2.8143054636e+01 -4.7658857086e+01 +1.1186165031e+01 1.1196924288e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.16622319E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="2"> 1 2 0.20319047E-01 0.18993951E+03</pdfrwt>
<pdfrwt beam="1"> 1 -1 0.26460994E-01 0.18993951E+03</pdfrwt>
<totfact> 0.38461506E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 2.08880100e+02 7.81653100e-03 1.15897300e-01
-1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +5.5014404351e+01 5.5014404351e+01 0.0000000000e+00 0.0000e+00 1.0000e+00
2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -6.9325744297e+02 6.9325744297e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00
1000024 1 1 2 0 0 +3.9719792605e+01 -9.5076827674e+01 -2.0540655375e+02 2.9295517664e+02 1.8169650000e+02 0.0000e+00 1.0000e+00
1000022 1 1 2 0 0 -3.9719792605e+01 +9.5076827674e+01 -4.3283648487e+02 4.5531667068e+02 9.6688070000e+01 0.0000e+00 -1.0000e+00
<mgrwt>
<rscale> 0 0.18943435E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="2"> 1 2 0.10665499E+00 0.20888007E+03</pdfrwt>
<pdfrwt beam="1"> 1 -1 0.84637548E-02 0.20888007E+03</pdfrwt>
<totfact> 0.37730198E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 1.88814600e+02 7.81653100e-03 1.18342200e-01
2 -1 0 0 501 0 +0.0000000000e+00 +0.0000000000e+00 +9.1623215616e+02 9.1623215616e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00
-1 -1 0 0 0 501 -0.0000000000e+00 -0.0000000000e+00 -2.5472853046e+01 2.5472853046e+01 0.0000000000e+00 0.0000e+00 1.0000e+00
1000024 1 1 2 0 0 -5.5862169602e+00 +5.1050193946e+01 +4.5982966479e+02 4.9708577415e+02 1.8169650000e+02 0.0000e+00 1.0000e+00
1000022 1 1 2 0 0 +5.5862169602e+00 -5.1050193946e+01 +4.3092963832e+02 4.4461923506e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.16476332E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="1"> 1 2 0.14095877E+00 0.18881458E+03</pdfrwt>
<pdfrwt beam="2"> 1 -1 0.39189012E-02 0.18881458E+03</pdfrwt>
<totfact> 0.84002546E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 2.12773000e+02 7.81653100e-03 1.15491800e-01
2 -1 0 0 501 0 +0.0000000000e+00 +0.0000000000e+00 +1.0917886022e+03 1.0917886022e+03 0.0000000000e+00 0.0000e+00 -1.0000e+00
-1 -1 0 0 0 501 -0.0000000000e+00 -0.0000000000e+00 -9.0078109673e+01 9.0078109673e+01 0.0000000000e+00 0.0000e+00 1.0000e+00
1000024 1 1 2 0 0 +6.7077754980e+01 -8.8086961603e+01 +1.0123685335e+03 1.0344865411e+03 1.8169650000e+02 0.0000e+00 -1.0000e+00
1000022 1 1 2 0 0 -6.7077754980e+01 +8.8086961603e+01 -1.0658040964e+01 1.4738017077e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.19398249E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="1"> 1 2 0.16796747E+00 0.21277302E+03</pdfrwt>
<pdfrwt beam="2"> 1 -1 0.13858171E-01 0.21277302E+03</pdfrwt>
<totfact> 0.96460131E+02</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 1.84210900e+02 7.81653100e-03 1.19023500e-01
-1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +3.1288716522e+02 3.1288716522e+02 0.0000000000e+00 0.0000e+00 1.0000e+00
2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -6.5756571387e+01 6.5756571387e+01 0.0000000000e+00 0.0000e+00 -1.0000e+00
1000024 1 1 2 0 0 +9.7673833857e+00 -2.8716739960e+01 +1.4166248636e+02 2.3238315577e+02 1.8169650000e+02 0.0000e+00 -1.0000e+00
1000022 1 1 2 0 0 -9.7673833857e+00 +2.8716739960e+01 +1.0546810747e+02 1.4626058083e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.15864473E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="2"> 1 2 0.10116396E-01 0.18421094E+03</pdfrwt>
<pdfrwt beam="1"> 1 -1 0.48136486E-01 0.18421094E+03</pdfrwt>
<totfact> 0.31066537E+03</totfact>
</mgrwt>
</event>
<event>
4 1 +1.3980101e-02 2.07193500e+02 7.81653100e-03 1.16078500e-01
4 -1 0 0 501 0 +0.0000000000e+00 +0.0000000000e+00 +3.3744364530e+02 3.3744364530e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00
-3 -1 0 0 0 501 -0.0000000000e+00 -0.0000000000e+00 -9.1890467007e+01 9.1890467007e+01 0.0000000000e+00 0.0000e+00 1.0000e+00
1000024 1 1 2 0 0 +5.5981920270e+01 +8.2350282924e+01 +1.8551656167e+02 2.7811069246e+02 1.8169650000e+02 0.0000e+00 1.0000e+00
1000022 1 1 2 0 0 -5.5981920270e+01 -8.2350282924e+01 +6.0036616627e+01 1.5122341985e+02 9.6688070000e+01 0.0000e+00 1.0000e+00
<mgrwt>
<rscale> 0 0.18744585E+03</rscale>
<asrwt>0</asrwt>
<pdfrwt beam="1"> 1 4 0.51914406E-01 0.20719354E+03</pdfrwt>
<pdfrwt beam="2"> 1 -3 0.14136995E-01 0.20719354E+03</pdfrwt>
<totfact> 0.30860366E+02</totfact>
</mgrwt>
</event>
Il mercoledì 9 febbraio 2022, 16:33:20 CET, Jack Y. Araz ***@***.***> ha scritto:
there is still no file attached
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Here I attached the first rows too
<LesHouchesEvents version="3.0"><header><!--#*********************************************************************# *# ***@***.*** *# *# Going Beyond *# *# http://madgraph.hep.uiuc.edu *# http://madgraph.phys.ucl.ac.be *# http://amcatnlo.cern.ch *# *# The ***@***.*** team *# *#....................................................................*# *# This file contains all the information necessary to reproduce *# the events generated: *# *# 1. software version *# 2. proc_card : code generation info including model *# 3. param_card : model primary parameters in the LH format *# 4. run_card : running parameters (collider and cuts) *# 5. pythia_card : present only if pythia has been run *# 6. pgs_card : present only if pgs has been run *# 7. delphes_cards : present only if delphes has been run *# *# *#*********************************************************************--><MGVersion>3.3.1</MGVersion><MG5ProcCard><![CDATA[#************************************************************#* ***@***.*** *#* *#* * * *#* * * * * *#* * * * * 5 * * * * *#* * * * * *#* * * *#* *#* *#* VERSION 3.3.1 2021-12-04 *#* *#* The ***@***.*** Development Team - Find us at *#* https://server06.fynu.ucl.ac.be/projects/madgraph *#* *#************************************************************#* *#* Command File for ***@***.*** *#* *#* run as ./bin/mg5_aMC filename *#* *#************************************************************set group_subprocesses Autoset ignore_six_quark_processes Falseset low_mem_multicore_nlo_generation Falseset complex_mass_scheme Falseset include_lepton_initiated_processes Falseset gauge unitaryset loop_optimized_output Trueset loop_color_flows Falseset max_npoint_for_channel 0set default_unset_couplings 99set max_t_for_channel 99set zerowidth_tchannel Trueset nlo_mixed_expansion Trueimport model smdefine p = g u c d s u~ c~ d~ s~define j = g u c d s u~ c~ d~ s~define l+ = e+ mu+define l- = e- mu-define vl = ve vm vtdefine vl~ = ve~ vm~ vt~import model MSSM_SLHA2generate p p > x1+ n1output MSSM_SLHA2_model_test]]></MG5ProcCard><MGProcCard>#*********************************************************************# MadGraph/MadEvent *# http://madgraph.hep.uiuc.edu *# *# proc_card.dat *#*********************************************************************# *# This Files is generated by MADGRAPH 5 *# *# WARNING: This Files is generated for MADEVENT (compatibility issue)*# This files is NOT a valid MG4 proc_card.dat *# Running this in MG4 will NEVER reproduce the result of MG5*# *#*********************************************************************#*********************************************************************# Process(es) requested : mg2 input *#*********************************************************************# Begin PROCESS # This is TAG. Do not modify this linep p > x1+ n1 #Process# Be carefull the coupling are here in MG5 convention end_coup # End the couplings input
done # this tells MG there are no more procs# End PROCESS # This is TAG. Do not modify this line#*********************************************************************# Model information *#*********************************************************************# Begin MODEL # This is TAG. Do not modify this lineMSSM_SLHA2# End MODEL # This is TAG. Do not modify this line#*********************************************************************# Start multiparticle definitions *#*********************************************************************# Begin MULTIPARTICLES # This is TAG. Do not modify this line
# End MULTIPARTICLES # This is TAG. Do not modify this line</MGProcCard><MGRunCard><![CDATA[#*********************************************************************# ***@***.*** *# *# run_card.dat MadEvent *# *# This file is used to set the parameters of the run. *# *# Some notation/conventions: *# *# Lines starting with a '# ' are info or comments *# *# mind the format: value = variable ! comment *# *# To display more options, you can type the command: *# update full_run_card *#*********************************************************************# #*********************************************************************# Tag name for the run (one word) *#********************************************************************* tag_1 = run_tag ! name of the run #*********************************************************************# Number of events and rnd seed *# Warning: Do not generate more than 1M events in a single run *#********************************************************************* 10000 = nevents ! Number of unweighted events requested 27 = iseed ! rnd seed (0=assigned automatically=default))#*********************************************************************# Collider type and energy *# lpp: 0=No PDF, 1=proton, -1=antiproton, 2=elastic photon of proton,*# +/-3=PDF of electron/positron beam *# +/-4=PDF of muon/antimuon beam *#********************************************************************* 1 = lpp1 ! beam 1 type 1 = lpp2 ! beam 2 type 6500.0 = ebeam1 ! beam 1 total energy in GeV 6500.0 = ebeam2 ! beam 2 total energy in GeV# To see polarised beam options: type "update beam_pol"
#*********************************************************************# PDF CHOICE: this automatically fixes alpha_s and its evol. *# pdlabel: lhapdf=LHAPDF (installation needed) [1412.7420] *# iww=Improved Weizsaecker-Williams Approx.[hep-ph/9310350] *# eva=Effective W/Z/A Approx. [21yy.zzzzz] *# none=No PDF, same as lhapdf with lppx=0 *#********************************************************************* nn23lo1 = pdlabel1 ! PDF type for beam #1 nn23lo1 = pdlabel2 ! PDF type for beam #2 230000 = lhaid ! if pdlabel=lhapdf, this is the lhapdf number# To see heavy ion options: type "update ion_pdf"#*********************************************************************# Renormalization and factorization scales *#********************************************************************* False = fixed_ren_scale ! if .true. use fixed ren scale False = fixed_fac_scale1 ! if .true. use fixed fac scale for beam 1 False = fixed_fac_scale2 ! if .true. use fixed fac scale for beam 2 91.188 = scale ! fixed ren scale 91.188 = dsqrt_q2fact1 ! fixed fact scale for pdf1 91.188 = dsqrt_q2fact2 ! fixed fact scale for pdf2 -1 = dynamical_scale_choice ! Choose one of the preselected dynamical choices 1.0 = scalefact ! scale factor for event-by-event scales #*********************************************************************# Type and output format#********************************************************************* False = gridpack !True = setting up the grid pack -1.0 = time_of_flight ! threshold (in mm) below which the invariant livetime is not written (-1 means not written) average = event_norm ! average/sum. Normalization of the weight in the LHEF# To see MLM/CKKW merging options: type "update MLM" or "update CKKW"
#*********************************************************************##*********************************************************************# Phase-Space Optimization strategy (basic options)#********************************************************************* 0 = nhel ! using helicities importance sampling or not. ! 0: sum over helicity, 1: importance sampling 2 = sde_strategy ! default integration strategy (hep-ph/2021.xxxxx) ! 1 is old strategy (using amp square) ! 2 is new strategy (using only the denominator)# To see advanced option for Phase-Space optimization: type "update psoptim" #*********************************************************************# Generation bias, check the wiki page below for more information: *# 'cp3.irmp.ucl.ac.be/projects/madgraph/wiki/LOEventGenerationBias' *#********************************************************************* None = bias_module ! Bias type of bias, [None, ptj_bias, -custom_folder-] {} = bias_parameters ! Specifies the parameters of the module.##******************************* # Parton level cuts definition *#******************************* 0.0 = dsqrt_shat ! minimal shat for full process# ##*********************************************************************# BW cutoff (M+/-bwcutoff*Gamma) ! Define on/off-shell for "$" and decay #********************************************************************* 15.0 = bwcutoff ! (M+/-bwcutoff*Gamma)#*********************************************************************# Standard Cuts *#*********************************************************************# Minimum and maximum pt's (for max, -1 means no cut) *#********************************************************************* {} = pt_min_pdg ! pt cut for other particles (use pdg code). Applied on particle and anti-particle {} = pt_max_pdg ! pt cut for other particles (syntax e.g. {6: 100, 25: 50}) ## For display option for energy cut in the partonic center of mass frame type 'update ecut'##*********************************************************************# Maximum and minimum absolute rapidity (for max, -1 means no cut) *#********************************************************************* {} = eta_min_pdg ! rap cut for other particles (use pdg code). Applied on particle and anti-particle {} = eta_max_pdg ! rap cut for other particles (syntax e.g. {6: 2.5, 23: 5})#*********************************************************************# Minimum and maximum DeltaR distance *#*********************************************************************#*********************************************************************# Minimum and maximum invariant mass for pairs *#********************************************************************* {} = mxx_min_pdg ! min invariant mass of a pair of particles X/X~ (e.g. {6:250}) {'default': False} = mxx_only_part_antipart ! if True the invariant mass is applied only ! to pairs of particle/antiparticle and not to pairs of the same pdg codes. #*********************************************************************# Inclusive cuts *#********************************************************************* 0.0 = ptheavy ! minimum pt for at least one heavy final state#*********************************************************************# maximal pdg code for quark to be considered as a light jet *# (otherwise b cuts are applied) *#********************************************************************* 4 = maxjetflavor ! Maximum jet pdg code#*********************************************************************##*********************************************************************# Store info for systematics studies *# WARNING: Do not use for interference type of computation *#********************************************************************* True = use_syst ! Enable systematics studies#systematics = systematics_program ! none, systematics [python], SysCalc [depreceted, C++]['--mur=0.5,1,2', '--muf=0.5,1,2', '--pdf=errorset'] = systematics_arguments ! see: https://cp3.irmp.ucl.ac.be/projects/madgraph/wiki/Systematics#Systematicspythonmodule]]></MGRunCard><slha>######################################################################## PARAM_CARD AUTOMATICALY GENERATED BY MG5 FOLLOWING UFO MODEL ############################################################################ #### Width set on Auto will be computed following the information #### present in the decay.py files of the model. #### See arXiv:1402.1178 for more details. #### ########################################################################
##################################### INFORMATION FOR DSQMIX###################################Block dsqmix 1 1 1.000000e+00 # RRd1x1 2 2 1.000000e+00 # RRd2x2 3 3 9.387379e-01 # RRd3x3 3 6 3.446319e-01 # RRd3x6 4 4 1.000000e+00 # RRd4x4 5 5 1.000000e+00 # RRd5x5 6 3 -3.446319e-01 # RRd6x3 6 6 9.387379e-01 # RRd6x6
##################################### INFORMATION FOR FRALPHA###################################Block fralpha 1 -1.138252e-01 # alp
##################################### INFORMATION FOR HMIX###################################Block hmix 1 3.576810e+02 # RMUH 2 9.748624e+00 # tb 4 1.664391e+05 # MA2
##################################### INFORMATION FOR MASS###################################Block mass 5 4.889917e+00 # MB 6 1.750000e+02 # MT 15 1.777000e+00 # Mta 23 9.118760e+01 # MZ 24 7.982901e+01 # MW 25 1.108991e+02 # MH01 35 3.999601e+02 # MH02 36 3.995839e+02 # MA0 37 4.078790e+02 # MH 1000001 5.684411e+02 # set of param :1*Msd1, 1*Msd2 1000002 5.611190e+02 # set of param :1*Msu1, 1*Msu2 1000005 5.130652e+02 # Msd3 1000006 3.996685e+02 # Msu3 1000011 2.029157e+02 # set of param :1*Msl1, 1*Msl2 1000012 1.852583e+02 # set of param :1*Msn1, 1*Msn2 1000015 1.344909e+02 # Msl3 1000016 1.847085e+02 # Msn3 1000021 6.077137e+02 # Mgo 1000022 9.668807e+01 # Mneu1 1000023 1.810882e+02 # Mneu2 1000024 1.816965e+02 # Mch1 1000025 -3.637560e+02 # Mneu3 1000035 3.817294e+02 # Mneu4 1000037 3.799393e+02 # Mch2 2000001 5.452285e+02 # set of param :1*Msd4, 1*Msd5 2000002 5.492593e+02 # set of param :1*Msu4, 1*Msu5 2000005 5.437267e+02 # Msd6 2000006 5.857858e+02 # Msu6 2000011 1.441028e+02 # set of param :1*Msl4, 1*Msl5 2000015 2.068678e+02 # Msl6 ## Dependent parameters, given by model restrictions.## Those values should be edited following the ## analytical expression. MG5 ignores those values ## but they are important for interfacing the output of MG5## to external program such as Pythia. 1 0.000000e+00 # d : 0.0 2 0.000000e+00 # u : 0.0 3 0.000000e+00 # s : 0.0 4 0.000000e+00 # c : 0.0 11 0.000000e+00 # e- : 0.0 12 0.000000e+00 # ve : 0.0 13 0.000000e+00 # mu- : 0.0 14 0.000000e+00 # vm : 0.0 16 0.000000e+00 # vt : 0.0 21 0.000000e+00 # g : 0.0 22 0.000000e+00 # a : 0.0 1000014 1.852583e+02 # svm : Msn1 1000013 2.029157e+02 # mul- : Msl1 2000013 1.441028e+02 # mur- : Msl4 1000004 5.611190e+02 # cl : Msu1 2000004 5.492593e+02 # cr : Msu4 1000003 5.684411e+02 # sl : Msd1 2000003 5.452285e+02 # sr : Msd4
##################################### INFORMATION FOR MSD2###################################Block msd2 1 1 2.736847e+05 # set of param :1*RmD21x1, 1*RmD22x2 2 2 2.736847e+05 # MG5 will not use this value use instead 1*mdl_RmD21x1 3 3 2.702620e+05 # RmD23x3
##################################### INFORMATION FOR MSE2###################################Block mse2 1 1 1.863063e+04 # set of param :1*RmE21x1, 1*RmE22x2 2 2 1.863063e+04 # MG5 will not use this value use instead 1*mdl_RmE21x1 3 3 1.796764e+04 # RmE23x3
##################################### INFORMATION FOR MSL2###################################Block msl2 1 1 3.815567e+04 # set of param :1*RmL21x1, 1*RmL22x2 2 2 3.815567e+04 # MG5 will not use this value use instead 1*mdl_RmL21x1 3 3 3.782868e+04 # RmL23x3
##################################### INFORMATION FOR MSOFT###################################Block msoft 1 1.013965e+02 # RMx1 2 1.915042e+02 # RMx2 3 5.882630e+02 # RMx3 21 3.233749e+04 # mHd2 22 -1.288001e+05 # mHu2
##################################### INFORMATION FOR MSQ2###################################Block msq2 1 1 2.998367e+05 # set of param :1*RmQ21x1, 1*RmQ22x2 2 2 2.998367e+05 # MG5 will not use this value use instead 1*mdl_RmQ21x1 3 3 2.487654e+05 # RmQ23x3
##################################### INFORMATION FOR MSU2###################################Block msu2 1 1 2.803821e+05 # set of param :1*RmU21x1, 1*RmU22x2 2 2 2.803821e+05 # MG5 will not use this value use instead 1*mdl_RmU21x1 3 3 1.791371e+05 # RmU23x3
##################################### INFORMATION FOR NMIX###################################Block nmix 1 1 9.863644e-01 # RNN1x1 1 2 -5.311036e-02 # RNN1x2 1 3 1.464340e-01 # RNN1x3 1 4 -5.311861e-02 # RNN1x4 2 1 9.935054e-02 # RNN2x1 2 2 9.449493e-01 # RNN2x2 2 3 -2.698467e-01 # RNN2x3 2 4 1.561507e-01 # RNN2x4 3 1 -6.033880e-02 # RNN3x1 3 2 8.770049e-02 # RNN3x2 3 3 6.958775e-01 # RNN3x3 3 4 7.102270e-01 # RNN3x4 4 1 -1.165071e-01 # RNN4x1 4 2 3.107390e-01 # RNN4x2 4 3 6.492260e-01 # RNN4x3 4 4 -6.843778e-01 # RNN4x4
##################################### INFORMATION FOR SELMIX###################################Block selmix 1 1 1.000000e+00 # RRl1x1 2 2 1.000000e+00 # RRl2x2 3 3 2.824872e-01 # RRl3x3 3 6 9.592711e-01 # RRl3x6 4 4 1.000000e+00 # RRl4x4 5 5 1.000000e+00 # RRl5x5 6 3 9.592711e-01 # RRl6x3 6 6 -2.824872e-01 # RRl6x6
##################################### INFORMATION FOR SMINPUTS###################################Block sminputs 1 1.279340e+02 # aEWM1 3 1.180000e-01 # aS (Note that Parameter not used if you use a PDF set)
##################################### INFORMATION FOR SNUMIX###################################Block snumix 1 1 1.000000e+00 # RRn1x1 2 2 1.000000e+00 # RRn2x2 3 3 1.000000e+00 # RRn3x3
##################################### INFORMATION FOR TD###################################Block td 3 3 -1.106937e+02 # Rtd3x3
##################################### INFORMATION FOR TE###################################Block te 3 3 -2.540197e+01 # Rte3x3
##################################### INFORMATION FOR TU###################################Block tu 3 3 -4.447525e+02 # Rtu3x3
##################################### INFORMATION FOR UMIX###################################Block umix 1 1 9.168349e-01 # RUU1x1 1 2 -3.992666e-01 # RUU1x2 2 1 3.992666e-01 # RUU2x1 2 2 9.168349e-01 # RUU2x2
##################################### INFORMATION FOR UPMNS###################################Block upmns 1 1 1.000000e+00 # RMNS1x1 2 2 1.000000e+00 # RMNS2x2 3 3 1.000000e+00 # RMNS3x3
##################################### INFORMATION FOR USQMIX###################################Block usqmix 1 1 1.000000e+00 # RRu1x1 2 2 1.000000e+00 # RRu2x2 3 3 5.536450e-01 # RRu3x3 3 6 8.327528e-01 # RRu3x6 4 4 1.000000e+00 # RRu4x4 5 5 1.000000e+00 # RRu5x5 6 3 8.327528e-01 # RRu6x3 6 6 -5.536450e-01 # RRu6x6
##################################### INFORMATION FOR VCKM###################################Block vckm 1 1 1.000000e+00 # RCKM1x1 2 2 1.000000e+00 # RCKM2x2 3 3 1.000000e+00 # RCKM3x3
##################################### INFORMATION FOR VMIX###################################Block vmix 1 1 9.725578e-01 # RVV1x1 1 2 -2.326612e-01 # RVV1x2 2 1 2.326612e-01 # RVV2x1 2 2 9.725578e-01 # RVV2x2
##################################### INFORMATION FOR YD###################################Block yd 3 3 1.388402e-01 # Ryd3x3
##################################### INFORMATION FOR YE###################################Block ye 3 3 1.008908e-01 # Rye3x3
##################################### INFORMATION FOR YU###################################Block yu 3 3 8.928445e-01 # Ryu3x3
##################################### INFORMATION FOR DECAY###################################DECAY 6 1.561950e+00 # WT DECAY 23 2.411433e+00 # WZ DECAY 24 2.002822e+00 # WW DECAY 25 1.986108e-03 # WH01 DECAY 35 5.748014e-01 # WH02 DECAY 36 6.321785e-01 # WA0 DECAY 37 5.469628e-01 # WH DECAY 1000001 5.312788e+00 # Wsd1 DECAY 1000002 5.477195e+00 # Wsu1 DECAY 1000003 5.312788e+00 # Wsd2 DECAY 1000004 5.477195e+00 # Wsu2 DECAY 1000005 3.736276e+00 # Wsd3 DECAY 1000006 2.021596e+00 # Wsu3 DECAY 1000011 2.136822e-01 # Wsl1 DECAY 1000012 1.498816e-01 # Wsn1 DECAY 1000013 2.136822e-01 # Wsl2 DECAY 1000014 1.498816e-01 # Wsn2 DECAY 1000015 1.483273e-01 # Wsl3 DECAY 1000016 1.475190e-01 # Wsn3 DECAY 1000021 5.506754e+00 # Wgo DECAY 1000023 2.077700e-02 # Wneu2 DECAY 1000024 1.704145e-02 # Wch1 DECAY 1000025 1.915985e+00 # Wneu3 DECAY 1000035 2.585851e+00 # Wneu4 DECAY 1000037 2.486895e+00 # Wch2 DECAY 2000001 2.858123e-01 # Wsd4 DECAY 2000002 1.152973e+00 # Wsu4 DECAY 2000003 2.858123e-01 # Wsd5 DECAY 2000004 1.152973e+00 # Wsu5 DECAY 2000005 8.015663e-01 # Wsd6 DECAY 2000006 7.373133e+00 # Wsu6 DECAY 2000011 2.161216e-01 # Wsl4 DECAY 2000013 2.161216e-01 # Wsl5 DECAY 2000015 2.699061e-01 # Wsl6 ## Dependent parameters, given by model restrictions.## Those values should be edited following the ## analytical expression. MG5 ignores those values ## but they are important for interfacing the output of MG5## to external program such as Pythia.DECAY 1 0.000000e+00 # d : 0.0 DECAY 2 0.000000e+00 # u : 0.0 DECAY 3 0.000000e+00 # s : 0.0 DECAY 4 0.000000e+00 # c : 0.0 DECAY 5 0.000000e+00 # b : 0.0 DECAY 11 0.000000e+00 # e- : 0.0 DECAY 12 0.000000e+00 # ve : 0.0 DECAY 13 0.000000e+00 # mu- : 0.0 DECAY 14 0.000000e+00 # vm : 0.0 DECAY 15 0.000000e+00 # ta- : 0.0 DECAY 16 0.000000e+00 # vt : 0.0 DECAY 21 0.000000e+00 # g : 0.0 DECAY 22 0.000000e+00 # a : 0.0 DECAY 1000022 0.000000e+00 # n1 : 0.0 #===========================================================# QUANTUM NUMBERS OF NEW STATE(S) (NON SM PDG CODE)#===========================================================
Block QNUMBERS 1000022 # n1 1 0 # 3 times electric charge 2 2 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 0 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000023 # n2 1 0 # 3 times electric charge 2 2 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 0 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000025 # n3 1 0 # 3 times electric charge 2 2 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 0 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000035 # n4 1 0 # 3 times electric charge 2 2 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 0 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000024 # x1+ 1 3 # 3 times electric charge 2 2 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000037 # x2+ 1 3 # 3 times electric charge 2 2 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000021 # go 1 0 # 3 times electric charge 2 2 # number of spin states (2S+1) 3 8 # colour rep (1: singlet, 3: triplet, 8: octet) 4 0 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 35 # h2 1 0 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 0 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 36 # h3 1 0 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 0 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 37 # h+ 1 3 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000012 # sve 1 0 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000014 # svm 1 0 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000016 # svt 1 0 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000011 # el- 1 -3 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000013 # mul- 1 -3 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000015 # ta1- 1 -3 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 2000011 # er- 1 -3 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 2000013 # mur- 1 -3 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 2000015 # ta2- 1 -3 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 1 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000002 # ul 1 2 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 3 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000004 # cl 1 2 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 3 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000006 # t1 1 2 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 3 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 2000002 # ur 1 2 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 3 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 2000004 # cr 1 2 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 3 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 2000006 # t2 1 2 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 3 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000001 # dl 1 -1 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 3 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000003 # sl 1 -1 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 3 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 1000005 # b1 1 -1 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 3 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 2000001 # dr 1 -1 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 3 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 2000003 # sr 1 -1 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 3 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)Block QNUMBERS 2000005 # b2 1 -1 # 3 times electric charge 2 1 # number of spin states (2S+1) 3 3 # colour rep (1: singlet, 3: triplet, 8: octet) 4 1 # Particle/Antiparticle distinction (0=own anti)</slha><MGGenerationInfo># Number of Events : 10000# Integrated weight (pb) : 0.013980101</MGGenerationInfo></header><init>2212 2212 6.500000e+03 6.500000e+03 0 0 247000 247000 -4 11.398010e-02 3.286922e-05 1.398010e-02 1<generator ***@***.***' version='3.3.1'>please cite 1405.0301 </generator></init><event> 4 1 +1.3980101e-02 1.86533800e+02 7.81653100e-03 1.18672100e-01 -1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +7.4508836946e+00 7.4508836946e+00 0.0000000000e+00 0.0000e+00 1.0000e+00 2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -2.9939017919e+03 2.9939017919e+03 0.0000000000e+00 0.0000e+00 -1.0000e+00 1000024 1 1 2 0 0 -3.1441852592e+01 +2.8153905938e+01 -2.1930153426e+03 2.2009341525e+03 1.8169650000e+02 0.0000e+00 -1.0000e+00 1000022 1 1 2 0 0 +3.1441852592e+01 -2.8153905938e+01 -7.9343556559e+02 8.0041852311e+02 9.6688070000e+01 0.0000e+00 1.0000e+00<mgrwt><rscale> 0 0.16176297E+03</rscale><asrwt>0</asrwt><pdfrwt beam="2"> 1 2 0.46059980E+00 0.18653378E+03</pdfrwt><pdfrwt beam="1"> 1 -1 0.11462910E-02 0.18653378E+03</pdfrwt><totfact> 0.37178932E+03</totfact></mgrwt></event><event> 4 1 +1.3980101e-02 1.92412800e+02 7.81653100e-03 1.17848400e-01 -1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +1.9246723430e+01 1.9246723430e+01 0.0000000000e+00 0.0000e+00 1.0000e+00 2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -1.2539178843e+03 1.2539178843e+03 0.0000000000e+00 0.0000e+00 -1.0000e+00 1000024 1 1 2 0 0 +1.6773626563e+01 +6.1055081581e+01 -6.8733769856e+02 7.1376173021e+02 1.8169650000e+02 0.0000e+00 1.0000e+00 1000022 1 1 2 0 0 -1.6773626563e+01 -6.1055081581e+01 -5.4733346230e+02 5.5940287751e+02 9.6688070000e+01 0.0000e+00 1.0000e+00<mgrwt><rscale> 0 0.16939158E+03</rscale><asrwt>0</asrwt><pdfrwt beam="2"> 1 2 0.19291049E+00 0.19241283E+03</pdfrwt><pdfrwt beam="1"> 1 -1 0.29610336E-02 0.19241283E+03</pdfrwt><totfact> 0.80481089E+03</totfact></mgrwt></event><event> 4 1 +1.3980101e-02 1.97338900e+02 7.81653100e-03 1.17217400e-01 -3 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +1.3363188123e+02 1.3363188123e+02 0.0000000000e+00 0.0000e+00 1.0000e+00 4 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -1.9319848396e+02 1.9319848396e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00 1000024 1 1 2 0 0 -4.1977160434e+01 +6.4551725020e+01 -2.8528084912e+01 1.9939026291e+02 1.8169650000e+02 0.0000e+00 1.0000e+00 1000022 1 1 2 0 0 +4.1977160434e+01 -6.4551725020e+01 -3.1038517824e+01 1.2744010228e+02 9.6688070000e+01 0.0000e+00 -1.0000e+00<mgrwt><rscale> 0 0.17555626E+03</rscale><asrwt>0</asrwt><pdfrwt beam="2"> 1 4 0.29722843E-01 0.19733886E+03</pdfrwt><pdfrwt beam="1"> 1 -3 0.20558751E-01 0.19733886E+03</pdfrwt><totfact> 0.48085431E+02</totfact></mgrwt></event><event> 4 1 +1.3980101e-02 1.84111600e+02 7.81653100e-03 1.19039000e-01 2 -1 0 0 501 0 +0.0000000000e+00 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0.0000000000e+00 0.0000e+00 -1.0000e+00 1000024 1 1 2 0 0 +2.4636841534e+02 -1.5258851803e+02 -9.7053765791e+02 1.0290469452e+03 1.8169650000e+02 0.0000e+00 -1.0000e+00 1000022 1 1 2 0 0 -2.4636841534e+02 +1.5258851803e+02 -4.0034615082e+02 5.0359336301e+02 9.6688070000e+01 0.0000e+00 1.0000e+00<mgrwt><rscale> 0 0.33251706E+03</rscale><asrwt>0</asrwt><pdfrwt beam="2"> 1 2 0.22334801E+00 0.34204425E+03</pdfrwt><pdfrwt beam="1"> 1 -1 0.12442808E-01 0.34204425E+03</pdfrwt><totfact> 0.71048314E+02</totfact></mgrwt></event><event> 4 1 +1.3980101e-02 1.86750800e+02 7.81653100e-03 1.18640100e-01 2 -1 0 0 501 0 +0.0000000000e+00 +0.0000000000e+00 +8.2154263814e+02 8.2154263814e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00 -1 -1 0 0 0 501 -0.0000000000e+00 -0.0000000000e+00 -2.6320062038e+01 2.6320062038e+01 0.0000000000e+00 0.0000e+00 1.0000e+00 1000024 1 1 2 0 0 -4.2745536019e+01 +5.9204532764e+00 +5.4701513728e+02 5.7801506135e+02 1.8169650000e+02 0.0000e+00 -1.0000e+00 1000022 1 1 2 0 0 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7.81653100e-03 1.17779200e-01 -1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +1.1460065535e+02 1.1460065535e+02 0.0000000000e+00 0.0000e+00 1.0000e+00 2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -2.3398135810e+02 2.3398135810e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00 1000024 1 1 2 0 0 -1.8236772297e+01 -6.2270477565e+01 -1.2845715409e+02 2.3178664929e+02 1.8169650000e+02 0.0000e+00 -1.0000e+00 1000022 1 1 2 0 0 +1.8236772297e+01 +6.2270477565e+01 +9.0764513348e+00 1.1679536416e+02 9.6688070000e+01 0.0000e+00 1.0000e+00<mgrwt><rscale> 0 0.17005342E+03</rscale><asrwt>0</asrwt><pdfrwt beam="2"> 1 2 0.35997132E-01 0.19293473E+03</pdfrwt><pdfrwt beam="1"> 1 -1 0.17630870E-01 0.19293473E+03</pdfrwt><totfact> 0.39657026E+03</totfact></mgrwt></event><event> 4 1 +1.3980101e-02 2.08338400e+02 7.81653100e-03 1.15955100e-01 -1 -1 0 0 0 501 -0.0000000000e+00 +0.0000000000e+00 +5.3719270584e+02 5.3719270584e+02 0.0000000000e+00 0.0000e+00 1.0000e+00 2 -1 0 0 501 0 +0.0000000000e+00 -0.0000000000e+00 -5.6634317192e+01 5.6634317192e+01 0.0000000000e+00 0.0000e+00 -1.0000e+00 1000024 1 1 2 0 0 +1.0169858844e+02 +6.9755707656e+00 +2.8920750299e+02 3.5643493007e+02 1.8169650000e+02 0.0000e+00 -1.0000e+00 1000022 1 1 2 0 0 -1.0169858844e+02 -6.9755707656e+00 +1.9135088566e+02 2.3739209296e+02 9.6688070000e+01 0.0000e+00 -1.0000e+00<mgrwt><rscale> 0 0.18879693E+03</rscale><asrwt>0</asrwt><pdfrwt beam="2"> 1 2 0.87129722E-02 0.20833838E+03</pdfrwt><pdfrwt beam="1"> 1 -1 0.82645028E-01 0.20833838E+03</pdfrwt><totfact> 0.13138678E+03</totfact></mgrwt></event><event> 4 1 +1.3980101e-02 1.84469600e+02 7.81653100e-03 1.18983600e-01 4 -1 0 0 501 0 +0.0000000000e+00 +0.0000000000e+00 +1.6626641357e+02 1.6626641357e+02 0.0000000000e+00 0.0000e+00 -1.0000e+00 -3 -1 0 0 0 501 -0.0000000000e+00 -0.0000000000e+00 -1.3399122830e+02 1.3399122830e+02 0.0000000000e+00 0.0000e+00 1.0000e+00 1000024 1 1 2 0 0 +1.5039234673e+01 -2.8093591477e+01 +6.1315274976e+01 1.9439292559e+02 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0.15559115E+03</rscale><asrwt>0</asrwt><pdfrwt beam="1"> 1 2 0.13089689E+00 0.18198734E+03</pdfrwt><pdfrwt beam="2"> 1 -1 0.39906621E-02 0.18198734E+03</pdfrwt><totfact> 0.89972169E+03</totfact></mgrwt></event></LesHouchesEvents>
Il mercoledì 9 febbraio 2022, 16:43:20 CET, Jack Y. Araz ***@***.***> ha scritto:
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Il mercoledì 9 febbraio 2022, 16:43:20 CET, Jack Y. Araz ***@***.***> ha scritto:
copied file is corrupted please test before sending it.
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Hi JackI managed to make it workmany thanks for your helpLorenzo Marafatto
Il giovedì 10 febbraio 2022, 04:39:20 CET, Jack Y. Araz ***@***.***> ha scritto:
Could you please install the file using the github page or at least use markdown syntax.
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HI @lmaraf by default lightest neutralino is treated as invisible in ma5. You need to reset
invisible
keyword in normal mode without neutralino and then you can define a new particle namedn1
which is then should be accessible throughplot
command.