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理学讲坛Westlake Science Forum | Nanlin WANG: Nonequilibrium and nonlinear terahertz spectroscopy study on Higgs modes in conventional and unconventional superconductors
时间
2025年3月5日(星期三)
下午14:00-15:30
地点
云谷校区E10-211教室
主持
西湖大学物理系PI 何睿华
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学术与研究
理学讲坛Westlake Science Forum | Nanlin WANG: Nonequilibrium and nonlinear terahertz spectroscopy study on Higgs modes in conventional and unconventional superconductors
Time: 14:00-15:30 PM, March 5th (Wednesday, Beijing Time), 2025
时间:2025年3月5日(星期三)下午14:00-15:30
Host: Prof. Ruihua HE, PI of School of Science, Westlake University
主持人:西湖大学物理系PI 何睿华
Venue: E10-211, Yungu Campus, Westlake University
地点:云谷校区E10-211教室
Lecture Language: English
讲座语言: 英文
王楠林教授
北京大学物理学院量子材料科学中心讲席教授
Prof. Nanlin Wang
International Center for Quantum Materials, School of Physics,
Peking University
主讲人/Speaker:
Nan-Lin Wang is a chair professor at the international center for quantum materials (ICQM), School of Physics, Peking University. He also serves as a vice-president of Beijing Academy of Quantum Information Sciences. He obtained his PhD in condensed matter physics from the University of Science and Technology of China in 1992. His research focuses primarily on infrared and terahertz spectroscopy study of strongly correlated electronic systems, including high temperature superconductors, charge/spin density wave compounds, transition metal oxides/chalcogenides, heavy fermions, quantum magnetic systems, 3D Dirac/Weyl semimetals in both equilibrium and nonequilibrium states. He is a fellow of the American Physical Society.
摘要/Abstract:
Ultra-short laser pulses play a crucial role in advancing ultrafast time-resolved spectroscopic techniques, which are essential for detecting and characterizing non-equilibrium and nonlinear responses in quantum materials. Intense laser pulses can also trigger non-adiabatic phase transitions. In this presentation, I shall first provide a brief introduction about the equilibrium and non-equilibrium optical/THz spectroscopy, followed by a focus on our recent research on detecting Higgs modes in conventional superconductors and high-Tc cuprates using terahertz pump-terahertz probe and terahertz third harmonic generation spectroscopies.
School of Science, Zeyuan LI, Email: lizeyuan@westlake.edu.cn