欢迎来到上海交通大学粒子与核物理研究所~!
Kim Siang Khaw
Kim Siang Khaw
李政道学者(物理学院双聘)

办公地点:李政道研究所张江实验楼N669室(S243实验室)

电子邮箱:kimsiang84@sjtu.edu.cn
个人主页:http://web.tdli.sjtu.edu.cn/kimsiang84/
个人简介
I have been involved in the precision muon physics since 2011, through research activities involving low-energy muon beamline, cryogenic muonium production, measurement of the anomalous magnetic moment and searches for the muon electric dipole moment. Recently I have started to get involved in the dark photon physics and currently leading a team on the simulation and analysis, and R&D of the detector system for an experiment based in Shanghai.
研究方向
超越标准模型物理
精确测量缪子物理
反常磁矩和电偶极矩
暗物质和暗光子
缪子冷却和缪子偶素生成
教育背景
2011-2015 瑞士苏黎世联邦理工学院 博士
2009-2011 日本东京大学 硕士
2005-2009 日本京都大学 学士
工作经历
2019-至今 上海交通大学李政道研究所 李政道学者
               上海交通大学物理与天文学院 长聘教轨副教授
2015-2019 美国华盛顿大学 博士后研究员
2011-2015 瑞士苏黎世联邦理工学院 研究助理
代表性论文专著


  1. A Large Muon EDM from Dark Matter, by K. S. Khaw et al., JHEP 02 (2023) 234
  2. Prospective study of light dark matter search with a newly proposed DarkSHINE experiment, by J. Chen et al., Sci. China Phys. Mech. Astron. 66 1, 211062 (2023)
  3. First observation of cyclotron radiation from MeV-scale e^{pm} following nuclear beta decay, by W. Byron et al., arXiv:2209.02870 [nucl-ex]
  4. Muon spinning its way to new physics, by K. S. Khaw, L. Li and J. Shu, Front.Phys.(Beijing) 16 (2021) 6, 64602
  5. Muon g-2: current status, by A. Keshavarzi, K. S. Khaw and T. Yoshioka, arXiv:2106.06723 [hep-ex]
  6. Measurement of the Positive Muon Anomalous Magnetic Moment to 0.46 ppm, B. Abi et al., Phys. Rev. Lett. 126, 141801 (2021)
  7. Magnetic-field measurement and analysis for the Muon g-2 Experiment at Fermilab, T. Albahri et al., Phys. Rev. A 103, 042208 (2021)
  8. Measurement of the anomalous precession frequency of the muon in the Fermilab Muon g-2 Experiment, T. Albahri et al,, Phys. Rev. D 103, 072002 (2021)
  9. Beam dynamics corrections to the Run-1 measurement of the muon anomalous magnetic moment at Fermilab, T. Albahri et al., Phys. Rev. Accel. Beams (2021)
  10. Search for a muon EDM using the frozen-spin technique, by A. Adelmann et al., arXiv:2102.08838 [hep-ex]
  11. Demonstration of Muon-Beam Transverse Phase-Space Compression, by A. Antognini et al., Phys. Rev. Lett. 125, 164802 (2020)
  12. Performance of the Muon g-2 calorimeter and readout systems measured with test beam data, by K.S. Khaw et al., NIM A 945, 162558 (2019)
  13. muCool: A next step towards efficient muon beam compression, by I. Belosevic et al., Eur. Phys. J. C79, 430 (2019)
  14. Muon g-2 reconstruction and analysis framework for the muon anomalous precession frequency, by K. S. Khaw, J. Phys. Conf. Ser. 1085 032039 (2018)
  15. Design and performance of SiPM-based readout of PbF2 crystals for high-rate, precision timing applications, by J. Kaspar et al., JINST 12 P01009 (2017)
  16. Spatial confinement of muonium atoms, by K. S. Khaw et al., Phys. Rev. A 94, 022716 (2016)
  17. Geant4 simulation of the PSI LEM beam line: energy loss and muonium formation in thin foils and the impact of unmoderated muons on the mSR spectrometer, by K. S. Khaw et al., JINST 10 P100025 (2015)
  18. Muon cooling: Longitudinal compression, by Y. Bao et al., Phys. Rev. Lett. 112, 224801 (2014)
  19. Muonium emission into vacuum from mesoporous thin films at cryogenic temperatures, by A. Antognini et al., Phys. Rev. Lett. 108, 143401 (2012)




教学情况
  • 物理研究导论(2022学年,春季,2022年级,致远学院物理学专业)
  • 物理学研究导论(2022学年,秋季,2021年级,物理与天文学院物理学专业
  • 物理研究导论(2021学年,春季,2021年级,致远学院物理学专业)
  • 物理学研究导论(2021学年,秋季,2020年级,物理与天文学院物理学专业)
  • 大学物理(A类)II(2020学年,春季,2019年级,莫航班)
获奖及专利
2018 戈登和贝蒂摩尔基金会和美国物理学会 基础物理创新奖
2018 费米实验室第51届用户年会 URA差旅基金
2018 入围华盛顿大学博士后导师奖
2016-2019 大学研究协会(URA) 访问学者奖
2010 欧洲核子研究中心计算学院,CSC 2010 参与奖
2010 东京大学青年研究员海外访问计划
2004-2011 日本政府本科和硕士奖学金