南开大学学士、硕士,中国科学院高能物理研究所博士
研究兴趣为高能粒子物理,研究方向为超越标准模型的新物理,具体包括:暗物质唯象学、重子数不对称、中微子物理、相变引力波、
有限温度场论,这些方向也是当前能量前沿、强度前沿和宇宙学前沿的交叉领域。
研究生:量子场论
本科生:理论力学
国家自然科学基金面上项目:
1. 与暗物质相关的新物理研究,2022-2025, 主持;
2. TeV新物理、对称性自发破缺与重子数不对称的起源, 2018-2021, 主持;
国家重点研发计划子课题:
MeV能标轻暗物质相关理论研究,2023-2028, 参与.
1. Gravitational Wave Signals of Electroweak Phase Transition Triggered by Dark Matter, Wei Chao, H. k. Guo and J. Shu, JCAP 1709(2017)009.
2. Tau flavored dark matter and its impact on tau Yukawa coupling, Wei Chao, H. k. Guo and H. l. Li, JCAP 1702(2017)002.
3. Majorana dark matter with B+L gauge symmetry, Wei Chao, H. k. Guo and Y. Zhang, JHEP 1704(2017)034.
4. Indirect detection imprint of a CP violating dark sector, Wei Chao, M. Ramsey-Musolf, J. h. Yu, Phys. Rev. D 93(2016)095025.
5. Symmetries behind the diphoton excess, Wei Chao, Phys. Rev. D 93(2016)115013.
6. ATLAS diboson excess from the stealth doublet model, Wei Chao, Phys. Lett. B 753(2016)117.
7. First order electroweak phase transition triggered by the Higgs portal vector dark matter, Wei Chao, Phys. Rev. D 92(2015)015025.
8. Electroweak baryogenesis, electric dipole moments and Higgs diphoton decays, Wei Chao, M. Ramsey-Musolf, JHEP 1410(2014)180.
9. The Higgs seesaw induced neutrino masses and dark matter, Y. Cai and Wei Chao, Phys. Lett. B 749(2015)458.
10. Electroweak Baryogenesis in exceptional supersymmetric standard model, Wei Chao, JCAP 1508(2015)055.
王永华、王越