Pressure-induced superconductivity and topological phase transitions in the topological nodal-line semimetal SrAs3

被引:0
|
作者
Erjian Cheng
Wei Xia
Xianbiao Shi
Zhenhai Yu
Lin Wang
Limin Yan
Darren C. Peets
Chuchu Zhu
Hao Su
Yong Zhang
Dongzhe Dai
Xia Wang
Zhiqiang Zou
Na Yu
Xufeng Kou
Wenge Yang
Weiwei Zhao
Yanfeng Guo
Shiyan Li
机构
[1] Fudan University,State Key Laboratory of Surface Physics, Department of Physics, and Laboratory of Advanced Materials
[2] ShanghaiTech University,School of Physical Science and Technology
[3] Chinese Academy of Sciences,Shanghai Institute of Optics and Fine Mechanics
[4] University of Chinese Academy of Sciences,Ningbo Institute of Materials Technology and Engineering
[5] State Key Laboratory of Advanced Welding & Joining and Flexible Printed Electronics Technology Center,School of Information Science and Technology
[6] Harbin Institute of Technology,Analytical Instrumentation Center, School of Physical Science and Technology
[7] Key Laboratory of Micro-systems and Micro-structures Manufacturing of Ministry of Education,undefined
[8] Harbin Institute of Technology,undefined
[9] Center for High Pressure Science and Technology Advanced Research,undefined
[10] Chinese Academy of Sciences,undefined
[11] ShanghaiTech University,undefined
[12] ShanghaiTech University,undefined
[13] Collaborative Innovation Center of Advanced Microstructures,undefined
来源
npj Quantum Materials | / 5卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Topological nodal-line semimetals (TNLSMs) are materials whose conduction and valence bands cross each other, meeting a topologically protected closed loop rather than discrete points in the Brillouin zone (BZ). The anticipated properties for TNLSMs, include drumhead-like nearly flat surface states, unique Landau energy levels, special collective modes, long-range Coulomb interactions, or the possibility of realizing high-temperature superconductivity. Recently, SrAs3 has been theoretically proposed and then experimentally confirmed to be a TNLSM. Here, we report high-pressure experiments on SrAs3, identifying a Lifshitz transition below 1 GPa and a superconducting transition accompanied by a structural phase transition above 20 GPa. A topological crystalline insulator (TCI) state is revealed by means of density functional theory (DFT) calculations on the emergent high-pressure phase. As the counterpart of topological insulators, TCIs possess metallic boundary states protected by crystal symmetry, rather than time reversal. In consideration of topological surface states (TSSs) and helical spin texture observed in the high-pressure state of SrAs3, the superconducting state may be induced in the surface states, and is most likely topologically nontrivial, making pressurized SrAs3 a strong candidate for topological superconductor.
引用
收藏
相关论文
共 50 条
  • [1] Pressure-induced superconductivity and topological phase transitions in the topological nodal-line semimetal SrAs3
    Cheng, Erjian
    Xia, Wei
    Shi, Xianbiao
    Yu, Zhenhai
    Wang, Lin
    Yan, Limin
    Peets, Darren C.
    Zhu, Chuchu
    Su, Hao
    Zhang, Yong
    Dai, Dongzhe
    Wang, Xia
    Zou, Zhiqiang
    Yu, Na
    Kou, Xufeng
    Yang, Wenge
    Zhao, Weiwei
    Guo, Yanfeng
    Li, Shiyan
    NPJ QUANTUM MATERIALS, 2020, 5 (01)
  • [2] Emerging Superconductivity and the Origin of Its Enhancement in Pressurized Topological Nodal-Line Semimetal SrAs3
    Qi, Mengyao
    Zhu, Xiangde
    Zhou, Yonghui
    An, Chao
    Chen, Chunhua
    Yuan, Yifang
    Zhang, Bowen
    Wang, Shuyang
    Zhou, Ying
    Chen, Xuliang
    Zhang, Ranran
    Tian, Mingliang
    Yang, Zhaorong
    ADVANCED ELECTRONIC MATERIALS, 2020, 6 (08):
  • [3] Chiral anomaly and nontrivial Berry phase in the topological nodal-line semimetal SrAs3
    An, Linlin
    Zhu, Xiangde
    Gao, Wenshuai
    Wu, Min
    Ning, Wei
    Tian, Mingliang
    PHYSICAL REVIEW B, 2019, 99 (04)
  • [4] Evidence for a Dirac nodal-line semimetal in SrAs3
    Shichao Li
    Zhaopeng Guo
    Dongzhi Fu
    Xing-Chen Pan
    Jinghui Wang
    Kejing Ran
    Song Bao
    Zhen Ma
    Zhengwei Cai
    Rui Wang
    Rui Yu
    Jian Sun
    Fengqi Song
    Jinsheng Wen
    Science Bulletin, 2018, 63 (09) : 535 - 541
  • [5] Evidence for a Dirac nodal-line semimetal in SrAs3
    Li, Shichao
    Guo, Zhaopeng
    Fu, Dongzhi
    Pan, Xing-Chen
    Wang, Jinghui
    Ran, Kejing
    Bao, Song
    Ma, Zhen
    Cai, Zhengwei
    Wang, Rui
    Yu, Rui
    Sun, Jian
    Song, Fengqi
    Wen, Jinsheng
    SCIENCE BULLETIN, 2018, 63 (09) : 535 - 541
  • [6] Superconductivity in the Topological Nodal-line Semimetal NaAISi
    Yamada, Takahiro
    Hirai, Daigorou
    Yamane, Hisanori
    Hiroi, Zenji
    JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 2021, 90 (03)
  • [7] Pressure-Induced Superconductivity and Topological Quantum Phase Transitions in the Topological Semimetal ZrTe2
    Zhu, Shihao
    Wu, Juefei
    Zhu, Peng
    Pei, Cuiying
    Wang, Qi
    Jia, Donghan
    Wang, Xinyu
    Zhao, Yi
    Gao, Lingling
    Li, Changhua
    Cao, Weizheng
    Zhang, Mingxin
    Zhang, Lili
    Li, Mingtao
    Gou, Huiyang
    Yang, Wenge
    Sun, Jian
    Chen, Yulin
    Wang, Zhiwei
    Yao, Yugui
    Qi, Yanpeng
    ADVANCED SCIENCE, 2023, 10 (35)
  • [8] Nodeless superconductivity in the topological nodal-line semimetal CaSb2
    Duan, Weiyin
    Zhang, Jiawen
    Kumar, Rohit
    Su, Hang
    Zhou, Yuwei
    Nie, Zhiyong
    Chen, Ye
    Smidman, Michael
    Cao, Chao
    Song, Yu
    Yuan, Huiqiu
    PHYSICAL REVIEW B, 2022, 106 (21)
  • [9] Nodal topological superconductivity in nodal-line semimetals
    Wu, Zhenfei
    Wang, Yuxuan
    PHYSICAL REVIEW B, 2023, 108 (22)
  • [10] Possible pressure-induced topological quantum phase transition in the nodal line semimetal ZrSiS
    VanGennep, D.
    Paul, T. A.
    Yerger, C. W.
    Weir, S. T.
    Vohra, Y. K.
    Hamlin, J. J.
    PHYSICAL REVIEW B, 2019, 99 (08)