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williamgilpin committed Dec 14, 2024
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Expand Up @@ -105,7 +105,7 @@ To install the optional precomputed trajectories and benchmark results (a large,
## Acknowledgements

+ Two existing collections of named systems can be found on the webpages of [Jürgen Meier](http://www.3d-meier.de/tut19/Seite1.html) and [J. C. Sprott](http://sprott.physics.wisc.edu/sprott.htm). The current version of `dysts` contains all systems from both collections.
+ Several of the analysis routines (such as calculation of the correlation dimension) use the library [nolds](https://github.com/CSchoel/nolds). If re-using the fractal dimension code that depends on `nolds`, please be sure to credit that library and heed its license. The Lyapunov exponent calculation is based on the QR factorization approach used by [Wolf et al 1985](https://www.sciencedirect.com/science/article/abs/pii/0167278985900119) and [Eckmann et al 1986](https://journals.aps.org/pra/abstract/10.1103/PhysRevA.34.4971), with implementation details adapted from conventions in the Julia library [DynamicalSystems.jl](https://github.com/JuliaDynamics/DynamicalSystems.jl/)
+ Several of the analysis routines (such as calculation of the correlation dimension) use the library [nolds](https://github.com/CSchoel/nolds). If re-using code that depends on `nolds`, please be sure to credit that library and heed its license. The Lyapunov exponent calculation is based on the QR factorization approach used by [Wolf et al 1985](https://www.sciencedirect.com/science/article/abs/pii/0167278985900119) and [Eckmann et al 1986](https://journals.aps.org/pra/abstract/10.1103/PhysRevA.34.4971), with implementation details adapted from conventions in the Julia library [DynamicalSystems.jl](https://github.com/JuliaDynamics/DynamicalSystems.jl/)


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