activity
20152023
most citedEfficient Numerical Evaluation of Feynman Integral

43 citations · 94 across the 6 of their papers we have counts for

collaborators

6 papers

hep-ph2023★ 22 cited

Analytic three-loop QCD corrections to top-quark and semileptonic decays

Long-Bin Chen, Hai Tao Li, Zhao Li +3

We present the first analytic results of NLO QCD corrections to the top-quark decay width. We focus on the dominant leading color contribution, which includes light-quark loops…

hep-ph2022★ 6 cited

Complete two-loop QCD amplitudes for production at hadron colliders

Long-Bin Chen, Liang Dong, Hai Tao Li +3

We calculate the complete two-loop QCD amplitudes for hadronic production by combining analytical and numerical techniques. The amplitudes have been first reduced to master in…

hep-ph2022★ 6 cited

Analytic two-loop master integrals for production at hadron colliders. Part II

Jian Wang, Yefan Wang

We present analytic results of the two-loop master integrals for hadronic production that contain two massive propagators. For the planar integral family, we succeed in constr…

hep-ph2022★ 8 cited

Analytic two-loop amplitudes for production: leading color and light fermion-loop contributions

Long-Bin Chen, Liang Dong, Hai Tao Li +3

We present the analytical results of the two-loop amplitudes for hadronic production, focusing on the leading color and light fermion-loop contributions. The calculation of th…

hep-ph2022★ 9 cited

One-loop squared amplitudes for hadronic production at next-to-next-to-leading order in QCD

Long-Bin Chen, Liang Dong, Hai Tao Li +3

We present the analytic results of one-loop squared amplitudes for production at a hadron collider. The calculation is performed using the method of differential equations. Af…

hep-ph2015★ 43 cited

Efficient Numerical Evaluation of Feynman Integral

Zhao Li, Jian Wang, Qi-Shu Yan +1

Feynman loop integrals are a key ingredient for the calculation of higher order radiation effects, and are responsible for reliable and accurate theoretical prediction. We improve…