| [1] |
Yi Liang,Long-Bin Chen,Cong-Feng Qiao. X(16.7) as the solution of the NuTeV anomaly. Chinese Physics C, 2017, 41(6): 063105.doi:10.1088/1674-1137/41/6/063105 |
| [2] |
Zhao Li,Jian Wang,Qi-Shu Yan,Xiaoran Zhao. Efficient numerical evaluation of Feynman integrals. Chinese Physics C, 2016, 40(3): 033103.doi:10.1088/1674-1137/40/3/033103 |
| [3] |
Xing-Xing Dong,Shu-Min Zhao,Hai-Bin Zhang,Fang Wang,Tai-Fu Feng. Feynman rules for neutrinos and new neutralinos in the BLMSSM. Chinese Physics C, 2016, 40(9): 093103.doi:10.1088/1674-1137/40/9/093103 |
| [4] |
NIU Li-Bo,LI Yu-Lan,HUANG Meng,FU Jian-Qiang,HE Bin,LI Yuan-Jing. Adaptive multitrack reconstruction for particle trajectories based on fuzzy c-regression models. Chinese Physics C, 2015, 39(3): 036201.doi:10.1088/1674-1137/39/3/036201 |
| [5] |
SUN Yi-Qian,LÜ Pin,BAO Ai-Dong. Topological index associated with transverse axial vector and vector anomalies in QED. Chinese Physics C, 2015, 39(4): 043101.doi:10.1088/1674-1137/39/4/043101 |
| [6] |
SUN Yan-Jun,WANG Zhi-Gang,HUANG Tao. B → A transitions in the light-cone QCD sum rules with the chiral current. Chinese Physics C, 2012, 36(11): 1046-1054.doi:10.1088/1674-1137/36/11/003 |
| [7] |
DUAN Chun-Gui,LIU Na,MIAO Wen-Dan. The dependence of J/ψ-nucleon inelastic cross section on the Feynman variable. Chinese Physics C, 2011, 35(9): 804-807.doi:10.1088/1674-1137/35/9/002 |
| [8] |
Young Bing-Lin. Current status of neutrino physics. Chinese Physics C, 2010, 34(2): 287-298.doi:10.1088/1674-1137/34/2/026 |
| [9] |
ZHANG Hong-Hao,FENG Kai-Xi,QIU Si-Wei,ZHAO An,LI Xue-Song. On analytic formulas of Feynman propagators in position space. Chinese Physics C, 2010, 34(10): 1576-1582.doi:10.1088/1674-1137/34/10/005 |
| [10] |
D. Werthmüller (for the Crystal Ball/TAPS collaborations). Investigation of the anomaly in η-photoproduction off the neutron. Chinese Physics C, 2009, 33(12): 1345-1348.doi:10.1088/1674-1137/33/12/051 |
| [11] |
Toru T. Takahashi,Teiji Kunihiro. Axial charges of N(1535) and N(1650) in two-flavor lattice QCD. Chinese Physics C, 2009, 33(12): 1233-1237.doi:10.1088/1674-1137/33/12/029 |
| [12] |
K. Goeke,T. Ledwig,S.i. Nam. Photoproduction of the Θ+and its vector and axial-vector structure. Chinese Physics C, 2009, 33(12): 1279-1284.doi:10.1088/1674-1137/33/12/038 |
| [13] |
BAO Ai-Dong,YAO Hai-Bo,WU Shi-Shu. Topological approach to examine the singularity of the axial-vector current in an Abelian gauge field theory (QED). Chinese Physics C, 2009, 33(3): 177-180.doi:10.1088/1674-1137/33/3/003 |
| [14] |
LIU Jing-Jing. Plasma neutrino energy loss due to the axial-vector current at the late stages of stellar evolution. Chinese Physics C, 2009, 33(10): 834-837.doi:10.1088/1674-1137/33/10/003 |
| [15] |
Li Ziping. Feynman Rules and Generalized Ward Identities in Phase Space Functional Integral. Chinese Physics C, 1996, 20(8): 698-702. |
| [16] |
CHEN Kun,YAN Mu-Lin. Flavor-Singlet Axial-Vector Current in Quark Model Within Background Field. Chinese Physics C, 1993, 17(2): 114-118. |
| [17] |
Shen Qixin,Yu Hong. A Possible Explanation for the Axial-Vector Meson E/f1(1420). Chinese Physics C, 1990, 14(S3): 275-280. |
| [18] |
DONG Shao-Jing. ON THE FEYNMAN RULES AND AXIAL VECTOR ANOMALY OF NORMAL FUZZY LATTICE FERMION. Chinese Physics C, 1989, 13(3): 226-233. |
| [19] |
DONG Shao-Jing. NORMAL FUZZY LATTICE ——A PROBABLE FERMIONIC ACTION WITHOUT MULTIPLICITY BUT REMAINS CONVARIANT AND CHIRAL LIMIT. Chinese Physics C, 1987, 11(4): 543-548. |
| [20] |
WANG Xing-Min. THE FEYNMAN RULES OF COLLECTIVE BAG-QUARK CURRENT AND HADRON TIME-LIKE STRUCTURE FUNCTIONS. Chinese Physics C, 1984, 8(2): 148-157. |