Personal profile
Personal profile
Title: Senior
Tel: 15010517842
Department: School of Physics
E-mail: xingyanxia@bit.edu.cn
Mailing Address: Beijing Institute of Technology Building B, 312A
Tel: 15010517842
Department: School of Physics
E-mail: xingyanxia@bit.edu.cn
Mailing Address: Beijing Institute of Technology Building B, 312A
Research Interests
Condensed Matter Physics: Theory and Computation of Quantum Transport in Mesoscopic Systems
Education
Bachelor of Science, Physics, Shanxi University, China, 2002
MSC, Condensed Matter Physics, Institute of Solid State Physics, Chinese Academy of Sciences, China, 2005
Doctor of Science, Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, China, 2008
MSC, Condensed Matter Physics, Institute of Solid State Physics, Chinese Academy of Sciences, China, 2005
Doctor of Science, Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, China, 2008
Professional Experience
Postdoctoral Fellow, Department of Physics, University of Hong Kong, China, 2008-2010
Associate Professor, School of Physics, Beijing Institute of Technology, China, 2010-2018
Professor, School of Physics, Beijing Institute of Technology, China, 2018-present
Associate Professor, School of Physics, Beijing Institute of Technology, China, 2010-2018
Professor, School of Physics, Beijing Institute of Technology, China, 2018-present
Research Achievement
发表论文(近五年)
[47] "Thermoelectric transport properties of ferromagnetic graphene with CT-invariant quantum spin Hall effect", Phys. Rev. B, 2020.
[46] "From quantized local Andreev reflection to perfect crossed Andreev reflection in topological insulator superconductor hybrid systems", Phys. Rev. B, 2020.
[45] "In-Plane Dual-Gated Spin-Valve Device Based on the Zigzag Graphene Nanoribbon", Phys. Rev. Appl. (2区), 2020.
[43] "Ballistic transport in bent-shaped carbon nanotubes", Carbon (1区) , 2019.
[42] "The Piezoconductive Effect of Suspended Ultrathin Graphene Film", Carbon (1区) , 2019.
[41] "Twist angle-dependent conductivities across MoS2/graphene heterojunctions", NatureComm. (1区), 2018.
[40] "Magnetization dynamics induced by the Rashba effect in ferromagnetic films", Nanoscale (1区), 2018.
[39] "Geometric effect on quantum anomalous Hall states in magnetic topological insulators", J. Phys. : Cond. Matt. (2区), 2018.
[38] "Evolution of individual quantum Hall edge states in the presence of disorder", Front. Phys. (2区) , 2018.
[37] "Influence of magnetic disorders on quantum anomalous Hall effect in magnetic topological insulator films beyond the two-dimensional limit", New J. Phys. (2区) , 2018.
[36] "The focusing effect of electron flow and negative refraction in three dimensional topological insulators", New J. Phys. (2区), 2017.
[35] "Short-time dynamics of molecular junctions after projective measurement", Phys. Rev. B (2区top), 2017.
[33] "Entanglement entropy fluctuation and distribution for open systems", Phys. Rev. B (2区top), 2017.
[32] "Crossed Andreev effects in two-dimensional quantum Hall systems", Phys. Rev. B (2区top) , 2016.
[31] "Magnetothermoelectric transport properties of multiterminal graphene nanoribbons", Phys. Rev. B (2区top) , 2016
学术机构任职情况
APS Phys. Rev. Lett. Phys. Rev. B期刊审稿人,2009年至今
奖励及荣誉
教育部新世纪人才奖,2013
[47] "Thermoelectric transport properties of ferromagnetic graphene with CT-invariant quantum spin Hall effect", Phys. Rev. B, 2020.
[46] "From quantized local Andreev reflection to perfect crossed Andreev reflection in topological insulator superconductor hybrid systems", Phys. Rev. B, 2020.
[45] "In-Plane Dual-Gated Spin-Valve Device Based on the Zigzag Graphene Nanoribbon", Phys. Rev. Appl. (2区), 2020.
[43] "Ballistic transport in bent-shaped carbon nanotubes", Carbon (1区) , 2019.
[42] "The Piezoconductive Effect of Suspended Ultrathin Graphene Film", Carbon (1区) , 2019.
[41] "Twist angle-dependent conductivities across MoS2/graphene heterojunctions", NatureComm. (1区), 2018.
[40] "Magnetization dynamics induced by the Rashba effect in ferromagnetic films", Nanoscale (1区), 2018.
[39] "Geometric effect on quantum anomalous Hall states in magnetic topological insulators", J. Phys. : Cond. Matt. (2区), 2018.
[38] "Evolution of individual quantum Hall edge states in the presence of disorder", Front. Phys. (2区) , 2018.
[37] "Influence of magnetic disorders on quantum anomalous Hall effect in magnetic topological insulator films beyond the two-dimensional limit", New J. Phys. (2区) , 2018.
[36] "The focusing effect of electron flow and negative refraction in three dimensional topological insulators", New J. Phys. (2区), 2017.
[35] "Short-time dynamics of molecular junctions after projective measurement", Phys. Rev. B (2区top), 2017.
[33] "Entanglement entropy fluctuation and distribution for open systems", Phys. Rev. B (2区top), 2017.
[32] "Crossed Andreev effects in two-dimensional quantum Hall systems", Phys. Rev. B (2区top) , 2016.
[31] "Magnetothermoelectric transport properties of multiterminal graphene nanoribbons", Phys. Rev. B (2区top) , 2016
学术机构任职情况
APS Phys. Rev. Lett. Phys. Rev. B期刊审稿人,2009年至今
奖励及荣誉
教育部新世纪人才奖,2013
Fingerprint
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Quantized dynamics in a square-wave-driven coherent single-electron source
Cheng, J., Zhang, J., Xu, F. & Xing, Y., Mar 2026, In: Frontiers of Physics. 21, 3, 35203.Research output: Contribution to journal › Article › peer-review
Open Access -
Specular Andreev reflection and Andreev interference in an Ising superconductor junction
Li, G., Patil, S., Xing, Y., Belzig, W. & Tang, G., 15 Aug 2025, In: Physical Review B. 112, 8, p. L0814071-L0814076Research output: Contribution to journal › Letter › peer-review
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石墨烯中的拓扑安德森绝缘体相
Wang, Y., Liang, Y. & Xing, Y., 20 Feb 2025, In: Wuli Xuebao/Acta Physica Sinica. 74, 4, 047301.Translated title of the contribution :Topological Anderson insulator phase in graphene Research output: Contribution to journal › Article › peer-review
Open Access1 Link opens in a new tab Citation (Scopus) -
Quasiparticle trapping in quench dynamics of superconductor/quantum dot/ superconductor Josephson junctions
Cheng, J., Zuo, X., Wang, J. & Xing, Y., 15 Sept 2024, In: Physical Review B. 110, 12, 125417.Research output: Contribution to journal › Article › peer-review
1 Link opens in a new tab Citation (Scopus) -
High-Efficiency Photoelectric Detector Based on a p - n Homojunction of Monolayer Black Phosphorus
Zuo, X., Cheng, J., Liang, Y., Xu, F. & Xing, Y., Aug 2023, In: Physical Review Applied. 20, 2, 024027.Research output: Contribution to journal › Article › peer-review
Open Access5 Link opens in a new tab Citations (Scopus)