郭静

简介:
2022/01-至今,中国科学院物理研究所,博士生导师
2015/12-至今,中国科学院物理研究所,副研究员
2013/7-2015/12,北京大学,物理学院量子材料科学中心,博士后
2008/9–2013/7, 中国科学院物理研究所, 凝聚态物理学, 硕博连读研究生
2004/9–2008/7, 中国科学技术大学 应用物理专业 本科
主要研究方向:
高压下超导材料和其它电子关联材料的物性研究
过去的主要工作及获得的成果:
长期从事高压下超导材料和其他电子关联材料的物性及量子相变研究以及高压-低温-磁场联合测试装置的研制和高压技术的创新,在非常规超导体的高压调控方面取得了多项重要研究结果。在Nature、Nature子刊、PNAS、Advanced Materials、Physical Review Letters、Physical Review B等共计发表SCI论文40余篇。2019年度成为中国科学院青年创新促进会会员,并在同年获得中国科学院物理研究所“科技新人奖”。2021年度国家自然科学基金优青,同年荣获第二届全国高压科学卓越青年学者。
代表性论文及专利:
2012-2022年发表的代表性论文如下:
1. J Guo, YZ Zhou, C Huang, S Cai, YT Sheng, GD Gu, CL Yang, GC Lin, K Yang, AG Li, Q Wu, T Xiang and LL Sun, Crossover from two-dimensional to three-dimensional superconducting states in bismuth-based cuprate superconductor, Nature Physics 16 295(2020).
2. YZ Zhou#, J Guo#, S Cai#, JY Zhao, GD Gu, CT Lin, HT Yan, C Huang, CL Yang, SJ Long, Y Gong, YC Li, XD Li, Q Wu, JP Hu, XJ Zhou, T Xiang and LL Sun, Quantum phase transition from superconducting to insulating-like states in a pressurized cuprate superconductor, Nature Physics (2022).
3. J Guo, GY Sun, BW Zhao, L Wang, WS Hong, VA Sidorov, NS Ma, Q Wu, SL Li, ZY Meng, AW Sandvik and LL Sun, Quantum Phases of SrCu2(BO3)2 from High-Pressure Thermodynamics, Physical Review Letters 124, 206602(2020).
4. J Guo, GC Lin, S Cai, CY Xi, CJ Zhang, WS Sun, QL Wang, K Yang, AG Li, Q Wu, YH Zhang, T Xiang, RJ Cava and LL Sun, Record-High Superconductivity in Niobium–Titanium Alloy, Advanced Materials 31, 1807240 (2019).
5. J Guo, HH Wang, F von Rohrc, Z Wang, S Cai, YZ Zhou, K Yang, AG Li, S Jiang, Q Wu, RJ Cava and LL Sun, Robust zero resistance in a superconducting high-entropy alloy at pressures up to 190 GPa, PNAS 114, 13144 (2017).
6. J Guo, XJ Chen, JH Dai, C Zhang, J Guo, GF Chen, XL Chen, Q Wu, D C Gu, PW Gao, K Yang, X Dai, HK Mao, LL. Sun, ZX Zhao, Pressure-driven quantum criticality in iron-selecnide superconductors, Physical Review Letters 108, 197001 (2012).
7. LL Sun, XJ Chen, J Guo, PW Gao, QZ Huang, HD Wang, MH Fang, X L Chen, GF Chen, Q Wu, C Zhang, DC Gu, XL Dong, K Yang, AG Li, X Dai, HK Mao, ZX Zhao, Re-emerging superconductivity at 48K in iron chalcogenide, Nature 483, 64 (2012).
8. J Guo, HH Wang, F Rohr, W Yi, YZ Zhou, Z Wang, S Cai, S Zhang, XD Li, YC Li, J Liu, K Yang, AG Li, S Jiang, Q Wu,T Xiang, RJ Cava and LL Sun, Electron-hole balance and the anomalous pressure-dependent superconductivity in black phosphorus, Physical Review B 96, 224513 (2017).
9. C Huang#, J Guo#, K Zhao, F Cui, SS Qin, QG Mu,YZ Zhou, S Cai, CL Yang, SJ Long, K Yang, AQ Li, Q Wu, ZA Ren, JP Hu, LL Sun, Reemergence of superconductivity in pressurized quasi-one-dimensional superconductor K2Mo3As3, Physical Review Materials 5, 021801 (2021).
10. Z Wang#, J Guo#, FF Tafti, A Hegg, S Sen, VA Sidorov, L Wang, S Cai, W Yi, YZ Zhou, HH Wang, S Zhang, K Yang, AG Li, XD Li, YC Li, J Liu, YG Shi, W Ku, Q Wu, RJ Cava, LL Sun, Pressure-induced melting of magnetic order and emergence of a new quantum state in alpha-RuCl3, Physical Review B 97, 245149 (2018).
11. GC Lin#, J Guo#, YL Zhu, S Cai, YZ Zhou, C Huang, CL Yang, SJ Long, Q Wu, ZQ Mao. T Xiang and LL Sun, Correlation between Fermi surface reconstruction and superconductivity in pressurized FeTe0.55Se0.45, Physical Review B 101, 214525 (2020).
12. J Guo, Q Wu and LL Sun, Pressure-induced phenomena and physics in iron-based superconductors, Acta Physica Sinica 67, 207409 (2018).
13. J Guo and LL Sun, Phenomena and findings in pressurized alkaline iron selenide superconductors, Acta Physica Sinica 64, 217406 (2015).
14. J Guo, Q Wu, J Feng, GF Chen, T Kagayama, C Zhang, W Yi, YC Li, XD Li, J Liu, Z Jiang, XJ Wei, YY Huang, K Shimizhu, LL Sun and ZX Zhao, Correlation between intercalated magnetic layers and superconductivity in pressurized EuFe2(As0.81P0.19)2, EPL 111, 57007 (2015).
15. J Guo, JW Simonson, LL Sun, Q Wu, PW Gao, C Zhang, DC Gu, G Kotliar, M Aronson and ZX Zhao, Observation of antiferromagnetic order collapse in the pressurized insulator LaMnPO, Scientific Reports 3, 2555 (2013).
目前的研究课题及展望:
开展高压下超导材料和其它电子关联材料的物性研究以及高压下技术手段的创新。
培养研究生情况:
拟每年招收1-2名研究生。
电话:
010-82649961
Email: