Bibliography

[1]

Jonathan M. Borwein, David M. Bradley, David J. Broadhurst, and Petr Lisonek. Special values of multiple polylogarithms. Trans. Am. Math. Soc., 353:907–941, 2001. arXiv:math/9910045, doi:10.1090/S0002-9947-00-02616-7.

[2]

R. Crandall. Note on fast polylogarithm computation. 01 2006. URL: https://www.reed.edu/physics/faculty/crandall/papers/Polylog.pdf.

[3]

Claude Duhr. Mathematical aspects of scattering amplitudes. In Theoretical Advanced Study Institute in Elementary Particle Physics: Journeys Through the Precision Frontier: Amplitudes for Colliders, 419–476. 2015. arXiv:1411.7538, doi:10.1142/9789814678766_0010.

[4]

Claude Duhr and Falko Dulat. PolyLogTools — polylogs for the masses. JHEP, 08:135, 2019. arXiv:1904.07279, doi:10.1007/JHEP08(2019)135.

[5]

Hjalte Frellesvig, Damiano Tommasini, and Christopher Wever. On the reduction of generalized polylogarithms to $\text Li_n$ and $\text Li_2,2$ and on the evaluation thereof. JHEP, 03:189, 2016. arXiv:1601.02649, doi:10.1007/JHEP03(2016)189.

[6]

L. Naterop, A. Signer, and Y. Ulrich. handyG —Rapid numerical evaluation of generalised polylogarithms in Fortran. Comput. Phys. Commun., 253:107165, 2020. arXiv:1909.01656, doi:10.1016/j.cpc.2020.107165.

[7]

Jens Vollinga and Stefan Weinzierl. Numerical evaluation of multiple polylogarithms. Comput. Phys. Commun., 167:177, 2005. arXiv:hep-ph/0410259, doi:10.1016/j.cpc.2004.12.009.