Supported in part by the National Natural Science Foundation of China(11975090,11575052)。
By means of the nuclear parton distributions determined without the fixed-target Drell-Yan experimental data and the analytic expression of quenching weight based on the BDMPS formalism,next-to-leading order analyses ...
Supported partially by National Natural Science Foundation of China (11405043);Natural Science Foundation of Hebei Province (A2018209269);Science and Technology Foundation of Hebei Education Department (ZD2020104)。
By globally analyzing nuclear Drell-Yan data including all incident energies,the nuclear effects of nuclear parton distribution functions(nPDFs)and initial-state parton energy loss are investigated.Based on the Landau...
Supported by National Natural Science Foundation of China(11475183);the Key Research Program of Frontier Sciences,CAS,(Y7292610K1)
At the designed circular electron-positron collider(CEPC), similar to the hadron collider, the angular distribution coefficients of the decay lepton pair from the produced Z(W) boson in e^+e^- collisions are predicted...
This article presents a review of our present understanding of the spin structure of the unpolarized hadron. Particular attention is paid to the quark sector at leading twist, namely, the quark Boer-Mulders function, ...
Supported by Ministry of Education of China with Program (NCET-09-0411);National Natural Science Foundation of China(11075062);CCNU (CCNU09A02001)
We investigate the lepton pair production with the Drell-Yan process in relativistic heavy ion collisions by computing the double differential cross section dσ/dM2dy and dσ/dM2dxF at the next-to-leading order in p+...
Supported by National Natural Science Foundation of China(10575028);Natural Science Foundation of Hebei Province(A2008000137)
By means of two typical kinds of quark energy loss parametrization and the nuclear parton distribu-tions determined only with lepton-nuclear deep inelastic scattering experimental data, a leading order analysis is per...