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國立臺灣大學物理學系

教師(領域別)

李侑昇


姓名  李侑昇
 You-Sheng Li
職稱   助理教授
學歷   2018 英國聖安德魯斯大學
辦公室  605
聯絡電話   (02)3366-5159
電子郵件  ysli@phys.ntu.edu.tw
個人網頁  

 

主要經歷
  • 德國馬克思普朗克固體物理化學研究所 博士後研究員 2020-2023 
  • 德國符茲堡大學  博士後研究員  2019
教學與研究領域
  • 非傳統超導物理
  • 超導元件及輸運性質
  • 量子材料
  • 單軸應力下輸運及熱力學量測
代表著作
  1. H.M.L. Noad, K. Ishida, You-Sheng Li, E. Gati, V. Stangier, N. Kikugawa, D.A. Sokolov, M. Nicklas, B. Kim, I.I. Mazin, M. Garst, J. Schmalian, A.P. Mackenzie, & C.W. Hicks, “Giant lattice softening at a Lifshitz transition in Sr2RuO4” Science 382, 447-450 (2023).
  2. Grgur Palle, Clifford Hicks, Roser Valentí, Zhenhai Hu, You-Sheng Li, Andreas Rost, Michael Nicklas, Andrew P. Mackenzie, and Jörg Schmalian, “Constraints on the superconducting state of Sr2RuO4 from elastocaloric measurements” Phys. Rev. B 108, 094516 (2023).
  3. You-Sheng Li, Markus Garst, Jörg Schmalian, Sayak Ghosh, Naoki Kikugawa, Dmitry Sokolov, Clifford W. Hicks, Fabian Jerzembeck, Matthias S. Ikeda, Zhenhai Hu, B. J. Ramshaw, Andreas W. Rost, Michael Nicklas, & Andrew P. Mackenzie, “Elastocaloric determination of the phase diagram of Sr2RuO4” Nature 607, 276-280 (2022).
  4. You-Sheng Li, Naoki Kikugawa, Dmitry A. Sokolov, Fabian Jerzembeck, Alexandra S. Gibbs, Yoshiteru Maeno, Clifford W. Hicks, Jörg Schmalian, Michael Nicklas, and   Andrew P. Mackenzie, “High-sensitivity heat-capacity measurements on Sr2RuO4 under uniaxial pressure” Proceedings of the National Academy of Sciences of the United States of America 118, e2020492118 (2021).
  5. Maja D. Bachmann, G. M. Ferguson, Florian Theuss, Tobias Meng, Carsten Putzke, Toni Helm, K.R. Shirer, You-Sheng Li, K.A. Modic, Michael Nicklas, Markus König, D. Low, Sayak Ghosh, Andrew P. Mackenzie, Frank Arnold, Elena Hassinger, Ross D. McDonald, Laurel E. Winter, Eric D. Bauer, Filip Ronning, B.J. Ramshaw, Katja C. Nowack, Philip J.W. Moll, “Spatial control of heavy-fermion superconductivity in CeIrIn5” Science 366, 221 (2019).
  6. You-Sheng Li, R. Borth, C. W. Hicks, A. P. Mackenzie, M. Nicklas, “Heat-capacity measurements under large uniaxial pressure using a piezo-driven device” Rev. Sci. Inst. 91, 103903 (2020).