You signed in with another tab or window. Reload to refresh your session.You signed out in another tab or window. Reload to refresh your session.You switched accounts on another tab or window. Reload to refresh your session.Dismiss alert
One of the things I talked with Florian Dobener is that the SpectralFunction is different from the ElectronicBandStructure. The SpectralFunction.value is related with the intensity measured in ARPES or calculated from Green's functions (KKR, DMFT), $A(E_{k}, k)$, where $E_{k}$ are the eigenvalues at each point $k$ in the reciprocal space.
Visually, this is (note in the picture $\omega == E_{k}$):
The white line in this plot corresponds to ElectronicBandStructure.value, while the color map would be SpectralFunction.value. The relation between both is that the band structure is the delta Dirac version of the dressed-by-interactions spectral function.
The text was updated successfully, but these errors were encountered:
One of the things I talked with Florian Dobener is that the$A(E_{k}, k)$ , where $E_{k}$ are the eigenvalues at each point $k$ in the reciprocal space.
SpectralFunction
is different from theElectronicBandStructure
. TheSpectralFunction.value
is related with the intensity measured in ARPES or calculated from Green's functions (KKR, DMFT),Visually, this is (note in the picture$\omega == E_{k}$ ):
The white line in this plot corresponds to
ElectronicBandStructure.value
, while the color map would beSpectralFunction.value
. The relation between both is that the band structure is the delta Dirac version of the dressed-by-interactions spectral function.The text was updated successfully, but these errors were encountered: