Efficient Computation of One-Loop Feynman Integrals and Fixed-Branch Integrals to High Orders in $\epsilon$
High Energy Physics - Phenomenology
2024-12-31 v1
Abstract
We propose a novel method, called the dimension-changing transformation (DCT), to compute one-loop Feynman integrals and recently introduced fixed-branch integrals to arbitrary orders in . The DCT relates one-loop Feynman integrals or fixed-branch integrals in one spacetime dimension to their corresponding quantities with auxiliary mass in any other dimension, making the expansion to high orders in highly efficient. We applied this method to several examples to demonstrate its validity and efficiency. The approach introduced in this work has been implemented in an open-source C++ package, available at \href{https://gitlab.com/multiloop-pku/dct}{https://gitlab.com/multiloop-pku/dct}.
Cite
@article{arxiv.2412.21054,
title = {Efficient Computation of One-Loop Feynman Integrals and Fixed-Branch Integrals to High Orders in $\epsilon$},
author = {Rui-Jun Huang and Dong-Shan Jian and Yan-Qing Ma and Dao-Ming Mu and Wen-Hao Wu},
journal= {arXiv preprint arXiv:2412.21054},
year = {2024}
}
Comments
6 pages, 5 figures