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Yong Hu

Release time: Fri, Nov 1 2024 15:20

Yong Hu

Professor/Ph. D Supervisor

Contact

Center of Quantum Materials and Devices
Chongqing University Huxi Campus
Chongqing 401331, China
(Office: No.1 Experiment Building, Room S1222)
Email: yong.hu[at]cqu.edu.cn (Replace [at] with @)

Education

2012.09 – 2018.06 Ph. D. Physics Institute of Physics (IOP), Chinese Academy of Sciences (CAS)

(Condensed Matter Physics) Beijing, China

2008.09 – 2012.06 B. S. Physics Central South University (CSU)

(Applied Physics) Changsha, China


Research Experience

2024.04 – Present Professor Center of Quantum Materials and Devices, Chongqing University (CQU), China

2020.09 – 2024.02 Postdoc Photon Science Division, Paul Scherrer Institut (PSI), Switzerland

2018.06 – 2020.08 Postdoc University of Science and Technology of China (USTC), China


Research Interests

1. Strongly correlated materials (unconventional superconductors, spin-orbit coupled Mott insulator, etc.);

2. Novel quantum materials (coexistence of topology and magnetism/superconductivity, such as Kagome metals).


Grant

2024.04 – Present CQU start-up fund

2021.01 – 2023.12 Youth Program of National Natural Science Foundation of China, Grant. No. 12004363


Selected Publications in Peer-Reviewed Journals

First, co-first, and corresponding author: ( # Equal contribution, * Corresponding author)

1. Yong Hu#,*, Junzhang Ma#, Yinxiang Li#, Yuxiao Jiang, Dariusz Jakub Gawryluk, Tianchen Hu, Jérémie Teyssier, Volodymyr Multian, Zhouyi Yin, Shuxiang Xu, Soohyeon Shin, Igor Plokhikh, Xinloong Han, Nicholas C. Plumb, Yang Liu, Jia-Xin Yin, Zurab Guguchia, Yue Zhao, Andreas P. Schnyder, Xianxin Wu*, Ekaterina Pomjakushina, M. Zahid Hasan, Nanlin Wang and Ming Shi*. Phonon promoted charge density wave in topological kagome metal ScV6Sn6”.

Nature Communications 15, 1658 (2024). (Highly Cited Paper)

2. Yong Hu#,*, Congcong Le#, Long Chen#, Hanbin Deng, Nicholas C. Plumb, Milan Radovic, Andreas P. Schnyder, Ronny Thomale, Jia-Xin Yin, Ying Zhou, Gang Wang, Xianxin Wu* and Ming Shi*. “Magnetic coupled electronic landscape in bilayer-distorted titanium-based kagome metals”.

Physical Review B (Letter) 106, L121114 (2024).

3. Yong Hu*, Congcong Le*, Xianxin Wu*, and Ming Shi*. “Topological electronic structure and electronic nematicity in candidate kagome superconductors, ATi3Bi5 (A = Rb, Cs)”.

Supercond. Sci. Technol. (2024) (Invited Review) https://doi.org/10.1088/1361-6668/ad8bf9

4. Yong Hu#,*, Congcong Le#, Zhen Zhao, Junzhang Ma, Nicholas C. Plumb, Milan Radovic, Andreas P. Schnyder, Xianxin Wu*, Hui Chen, Xiaoli Dong, Jiangping Hu, Haitao Yang, Hong-Jun Gao*, Ming Shi*. Non-trivial band topology and orbital-selective electronic nematicity in a new titanium-based kagome superconductor”.

Nature Physics 19, 1827–1833 (2023).

5. Yong Hu*, Xianxin Wu*, Andreas P. Schnyder* and Ming Shi*. “Electronic landscape of kagome superconductors AV3Sb5 (A = K, Rb, Cs): A perspective from angle-resolved photoemission spectroscopy”.

npj Quantum Materials 8, 67 (2023). (Invited Review)

6. Yong Hu#,*, Xianxin Wu#, Yongqi Yang, Nicholas C. Plumb, Andreas P. Schnyder, Weiwei Xie, Junzhang Ma* and Ming Shi*. Tunable Topological Dirac Surface States and Van Hove Singularities in Kagome Metal GdV6Sn6”.

Science Advances 8, eadd2024 (2022).

7. Yong Hu#,*, Xianxin Wu#, Brenden R. Ortiz#, Sailong Ju, Xinloong Han, J. Z. Ma, N. C. Plumb, Milan Radovic, Ronny Thomale, S. D. Wilson, Andreas P. Schnyder* and Ming Shi*. “Rich nature of van Hove singularities in kagome superconductor CsV3Sb5”.

Nature Communications 13, 2220 (2022). (Highly Cited Paper)

8. Yong Hu#, Samuel M. L. Teicher#, Brenden R. Ortiz#, Yang Luo, Shuting Peng, Linwei Huai, N. C. Plumb J. Z. Ma, Stephen D. Wilson*, J.-F. He* and Ming Shi*. Topological surface states and flat bands in the kagome superconductor CsV3Sb5”.

Science Bulletin 67, 495-500 (2022). (Highly Cited Paper)

9. Yong Hu*, Xianxin Wu*, Brenden R. Ortiz, Xinloong Han, N. C. Plumb, S. D. Wilson, Andreas P. Schnyder and Ming Shi*. “Coexistence of tri-hexagonal and star-of-David pattern in the charge density wave of the kagome superconductor AV3Sb5”.

Physical Review B (Letter) 106, L241106 (2022). Editors’ suggestion

10. Shuting Peng#, Christopher Lane#, Yong Hu#, Mingyao Guo#, Xiang Chen, Zeliang Sun, M. Hashimoto, D.-H. Lu, Z.-X. Shen, T. Wu, X.-H. Chen, R. S. Markiewicz, Yao Wang, A. Bansil, S. D. Wilson and J.-F. He*, “Electronic nature of the pseudogap in electron-doped Sr2IrO4”.

npj Quantum Materials 7, 58 (2022).

11. Yong Hu#, Yu Xu#, Yi-Min Zhang#, Qing-Yan Wang, Shao-Long He, De-Fa Liu, Ai-Ji Liang, Jian-Wei Huang, Cong Li, Yong-Qing Cai, Ding-Song Wu, Guo-Dong Liu, Fang-Sen Li, Jia-Qi Fan, Guan-Yu Zhou, Lili Wang, Can-Li Song*, Xu-Cun Ma, Qi-Kun Xue, Zu-Yan Xu, Lin Zhao* and X. J. Zhou*. Discovery of insulating parent phase in an iron-based superconductor”.

Physical Review B 102, 115144 (2020).

12. Yong Hu#, Lixuan Xu#, Mengzhu Shi#, Aiyun Luo#, Shuting Peng, Z. Y. Wang, J. J. Ying, T. Wu, C. F. Zhang, Z. K. Liu, Y. L. Chen, G. Xu, X.-H. Chen* and J.-F. He*. “Universal gapless Dirac cone and tunable topological states in (MnBi2Te4)m(Bi2Te3)n heterostructures”.

Physical Review B Rapid Communications 101, 161113 (2020).

13. Yong Hu#, Xiang Chen#, Shuting Peng, Christopher Lane, Matthew Matzelle, Zeliang Sun, M. Hashimoto, D.-H. Lu, E. F. Schwier, M. Arita, T. Wu, R. S. Markiewicz, K. Shimada, Xianhui Chen, Z.-X. Shen, Arun Bansil, Stephen D. Wilson and J.-F. He*. Spectroscopic evidence for electron-boson coupling in electron-doped Sr2IrO4”.

Physical Review Letters 123, 216402 (2019).

14. Yong Hu#, Yu Xu#, Qing-Yan Wang*, Lin Zhao, Shao-Long He, Jian-Wei Huang, Cong Li, Guo-Dong Liu and X. J. Zhou*. “Identification of a large amount of excess Fe in superconducting single-layer FeSe/SrTiO3 films”.

Physical Review B 97, 224512 (2018).

15. Lin Zhao#, Ai-Ji Liang#, Dongna Yuan#, Yong Hu#, De-Fa Liu, Jian-Wei Huang, Shao-Long He, Bing Shen, Yu Xu, Xu Liu, Guo-Dong Liu, Hua-Xue Zhou, Yu-Long Huang, Xiao-Li Dong, Fang Zhou, Kai Liu, Zhong-Yi Lu, Zhong-Xian Zhao, Chuang-Tian Chen, Zu-Yan Xu and X. J. Zhou*. Common electronic origin of superconductivity in (Li,Fe)OHFeSe bulk superconductor and single-layer FeSe/SrTiO3 Films”.

Nature Communications 7, 10608 (2016).