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徐杨

  • 个人资料
    • 部门: 物理与电子科学学院
    • 性别:
    • 专业技术职务: 研究员
    • 毕业院校: 复旦大学
    • 学位: 博士
    • 学历: 博士
    • 联系电话:
    • 电子邮箱: yxu@phy.ecnu.edu.cn
    • 办公地址:
    • 通讯地址:
    • 邮编: 200241
    • 传真:

    工作经历

    2018.9-2021.01:苏黎世大学(Universität Zürich), 博士后

    2021.07-至今:华东师范大学, 物理与电子科学学院, 研究员

    教育经历

    2009.09-2013.6:复旦大学,物理学,学士

    2013.09-2018.6:复旦大学,凝聚态物理,博士

    个人简介

    主要利用输运测量手段,研究包括非常规超导、阻挫磁性、拓扑材料等多种新奇物态。输运测量利用包括热导率、电阻率、磁阻、霍尔效应、塞贝克效应、能斯特效应等在内的电输运、热输运、热电输运等多种物理量的大小及其随温度和其他调控参数的变化,来得到所研究体系的丰富物理信息。近年来发表学术论文五十余篇。其中二十篇为第一作者或通讯作者:包括一区6篇 Physical Review Letters,1篇Physical Review X1篇Nature Communications1篇ACS Nano,1篇npj Quantum Materials,1篇Communications Physics,二区6篇Physical Review B 等。入选上海市高层次人才计划、上海市浦江人才计划。担任New Journal of Physics编委。担任Physical Review Letters、Nature Communications、Advanced Materials等期刊审稿人



    社会兼职

    目前担任美国物理学会Physical Review 系列杂志(PRL、PRX、PRB、PRR、PRM 等)、Advanced Materials、Nature Communications 等国际知名学术期刊审稿人。

    研究方向

    涵盖了关联电子体系和拓扑态的新奇量子物态近年来成为了凝聚态物理的研究前沿。诸如非常规超导、以自旋液体为代表的量子磁性、拓扑绝缘体与半金属等新奇量子物态,在低功耗多自由度器件、新能源、量子计算等领域都有不可估量的应用价值。同时这些不同的量子物态的物理机制之间还存在着更深层次的联系。对这些量子物态及其相互关系的研究,也是加深对凝聚态物理中基本规律的理解,从而探索更多新奇量子态,乃至实现按需设计先进功能材料的必经之路。本人长期从事量子调控下的输运测量的研究工作,在多个新奇量子物态的体系中都取得了重要的创新研究成果目前课题组主要的研究方向包括:

    1. 利用极低温热导率、热霍尔效应等手段研究以量子自旋液体为代表的量子磁体中的分数化激发。

    2. 利用电阻率、霍尔效应、热导率、塞贝克效应、能斯特效应等手段研究拓扑材料的反常输运性质,如从拓扑霍尔/能斯特效应研究贝里曲率等。

    3. 利用电阻率、霍尔效应、能斯特效应等手段研究拓扑磁结构,如磁斯格明子等。

    4. 利用极低温热导率研究非常规超导体的能隙对称性和能隙结构。

    5. 利用电阻率、霍尔效应、磁阻等研究量子临界体系,如重费米子、铜/钌/镍酸盐等体系中的量子相变和奇异金属行为。

    招生与培养

    开授课程

    科研项目

    1. 国家自然科学基金委员会面上项目 (Grant No. 12274125) 自旋链体系磁激发局域性的热输运和自旋输运研究

    2. 上海市浦江人才计划 (Grant No. 21PJ1403100) 量子自旋液体中分数化激发的输运研究

    3. 上海市“科技创新行动计划”基础研究领域项目 (Grant No. 21JC1402300) 稀土磁斯格明子拓扑材料设计、物性与器件研究

    学术成果

    第一或通讯作者:


    20. Anomalous spin current anisotropy in a noncollinear antiferromagnet.

    Nature Communications 14, 5873 (2023).

    Cuimei Cao#, Shiwei Chen#, Rui-Chun Xiao, Zengtai Zhu, Guoqiang Yu, Yangping Wang, Xuepeng Qiu, Liang Liu, Tieyang Zhao, Ding-Fu Shao*, Yang Xu*, Jingsheng Chen*, and Qingfeng Zhan*.


    19. Unambiguous experimental verification of linear-in-temperature spinon thermal conductivity in an antiferromagnetic Heisenberg chain.

    Physical Review Letters 129, 167201 (2022).

    B. Y. Pan#, Y. Xu# *, J. M. Ni, S. Y. Zhou, X. C. Hong, X. Qiu, and S. Y. Li*.


    18. Critical topology and pressure-induced superconductivity in the van der Waals compound AuTe2Br.

    npj Quantum Materials 7, 93 (2022).

    Erjian Cheng#, Xianbiao Shi# *, Limin Yan#, Tianheng Huang, Fengliang Liu, Wenlong Ma, Zeji Wang, Shuang Jia, Jian Sun, Weiwei Zhao, Wenge Yang*, Yang Xu*, and Shiyan Li*.


    17. Efficient tuning of the spin–orbit torque via the magnetic phase transition of FeRh.

    ACS Nano 16, 12727 (2022).

    Cuimei Cao#, Shiwei Chen#, Baoshan Cui, Guoqiang Yu, Changhuan Jian, Zhenzhong Yang, Xuepeng Qiu, Tian Shang, Yang Xu*, and Qingfeng Zhan*.


    16. Quantum critical magnetic excitations in spin-1/2 and spin-1 chain systems.

    Physical Review X 12, 021020 (2022).

    Y. Xu# *, L. S. Wang#, Y. Y. Huang, J. M. Ni, C. C. Zhao, Y. F. Dai, B. Y. Pan, X. C. Hong, P. Chauhan, S. M. Koohpayeh, N. P. Armitage, and S. Y. Li*.


    15. Recent developments on the magnetic and electrical transport properties of FeRh- and Rh-based heterostructures.

    Journal of Physics: Condensed Matter 34, 144004 (2022).

    Xiaoyan Zhu, Yang Xu*, Cuimei Cao, Tian Shang , Yali Xie and Qingfeng Zhan*.


    14. Heat transport in herbertsmithite: Can a quantum spin liquid survive disorder?

    Physical Review Letters 127, 267202 (2021).

    Y. Y. Huang#, Y. Xu# *, Le Wang#, C. C. Zhao, C. P. Tu, J. M. Ni, L. S. Wang, B. L. Pan, Ying Fu, Zhanyang Hao , Cai Liu, Jia-Wei Mei*, and S. Y. Li*.


    13. Unconventional transverse transport above and below the magnetic transition temperature in Weyl semimetal EuCd2As2.

    Physical Review Letters 126, 076602 (2021).

    Y. Xu*, L. Das, J. Z. Ma, C. J. Yi, S. M. Nie, Y. G. Shi, A. Tiwari, S. S. Tsirkin, T. Neupert, M. Medarde, M. Shi, J. Chang*, and T. Shang*.


    12. Magnetotransport of dirty-limit van Hove singularity quasiparticles.

    Communications Physics 4, 1 (2021).

    Y. Xu, F. Herman, V. Granata, D. Destraz, L. Das, J. Vonka, S. Gerber, J. Spring, M. Gibert, A. Schilling, X. Zhang, S. Y. Li, R. Fittipaldi, Mark H. Fischer, A. Vecchione, and J. Chang*.


    11. Anomalous Hall resistivity and possible topological Hall effect in the EuAl4 antiferromagnet.

    Physical Review B 103, L020405 (2021).

    T. Shang*, Y. Xu*, D. J. Gawryluk, J. Z. Ma, T. Shiroka, M. Shi, and E. Pomjakushina*.


    10. Specific heat and thermal conductivity of the triangular-lattice rare-earth material KBaYb(BO3)2 at ultralow temperature.

    Physical Review B 103, 104412 (2021).

    B. L. Pan, J. M. Ni, L. P. He, Y. J. Yu, Y. Xu*, and S. Y. Li*.


    9.  Giant magnetoresistance and topological Hall effect in the EuGa4 antiferromagnet.

    Journal of Physics: Condensed Matter 34, 034005 (2021).

    H. Zhang#, X. Y. Zhu#, Y. Xu∗ , D. J. Gawryluk , W. Xie, S. L. Ju, M. Shi, T. Shiroka, Q. F. Zhan , E. Pomjakushina∗, and T. Shang∗.


    8. Crossover from multiple- to single-gap superconductivity in Nb5Ir3−xPtxO alloys.

    Physical Review B 101, 134513 (2020).

    Y. Xu*, S. Jöhr, L. Das, J. Kitagawa, M. Medarde, T. Shiroka, J. Chang, and T. Shang*.


    7. Nodeless superconducting gap in topological superconductor candidate 2M-WS2.

    Physical Review B 102, 024523 (2020).

    L. S. Wang, Y. Q. Fang, Y. Y. Huang, E. J. Cheng, J. M. Ni, B. L. Pan, Y. Xu*, F. Q. Huang*, and S. Y. Li*.


    6. Ultralow-temperature thermal conductivity of the Kitaev honeycomb magnet α-RuCl3 across the field-induced phase transition.

    Physical Review Letters 120, 067202 (2018).

    Y. J. Yu#, Y. Xu#, K. J. Ran#, J. M. Ni, Y. Y. Huang, J. H. Wang, J. S. Wen*, and S. Y. Li*.


    5. Heat transport study of the spin liquid candidate 1T-TaS2.

    Physical Review B 96, 081111 (R) (2017).

    Y. J. Yu#, Y. Xu#, L. P. He, M. Kratochvilova, Y. Y. Huang, J. M. Ni, L. H. Wang, Sang Wook Cheong, Je-Geun Park, and S. Y. Li*.


    4. Absence of magnetic thermal conductivity in the quantum spin liquid candidate YbMgGaO4.

    Physical Review Letters 117, 267202 (2016).

    Y. Xu, J. Zhang, Y. S. Li, J. Yu, X. C. Hong, Q. M. Zhang, and S. Y. Li*.


    3. Bulk Fermi surface of charge-neutral excitations in SmB6 or not: A heat-transport study.

    Physical Review Letters 116, 246403 (2016). 

    Y. Xu, S. Cui, J. K. Dong, D. Zhao, T. Wu, X. H. Chen, K. Sun, H. Yao, and S. Y. Li*.


    2. Universal heat conduction in Ce1−xYbxCoIn5: Evidence for robust nodal d-wave superconducting gap.

    Physical Review B 93, 064502 (2016).

    Y. Xu, J. K. Dong*, I. K. Lum, J. Zhang, X. C. Hong, L. P. He, K. F. Wang, Y. C. Ma, C. Petrovic, M. B. Maple, L. Shu*, and S. Y. Li*.


    1. Experiment to measure the performance parameters of radio-frequency cavities used in synchrotron radiation.

    Physics Experimentation 32, 11001 (2012).

    H. Zhou#, Y. Xu#, and X. Y. Zhang*.


    其他:


    38. The discovery of three-dimensional Van Hove singularity.

    Nature Communications 15, 2313 (2024).

    Wenbin Wu#, Zeping Shi#, Mykhaylo Ozerov, Yuhan Du, Yuxiang Wang, Xiao-Sheng Ni, Xianghao Meng, Xiangyu Jiang, Guangyi Wang, Congming Hao, Xinyi Wang, Pengcheng Zhang, Chunhui Pan, Haifeng Pan, Zhenrong Sun, Run Yang, Yang Xu, Yusheng Hou, Zhongbo Yan, Cheng Zhang, Hai-Zhou Lu, Junhao Chu, Xiang Yuan*.


    37. Tunable positions of Weyl nodes via magnetism and pressure in the ferromagnetic Weyl semimetal CeAlSi.

    Nature Communications 15, 1467 (2024).

    Erjian Cheng# *, Limin Yan#, Xianbiao Shi#, Rui Lou# *, Alexander Fedorov, Mahdi Behnami, Jian Yuan, Pengtao Yang, Bosen Wang, Jin-Guang Cheng, Yuanji Xu, Yang Xu, Wei Xia, Nikolai Pavlovskii, Darren C. Peets, Weiwei Zhao, Yimin Wan, Ulrich Burkhardt, Yanfeng Guo, Shiyan Li, Claudia Felser, Wenge Yang*, Bernd Büchner*.


    36. A Co-doped Ag3PO4 photocatalyst: Efficient degradation of organic pollutants and enhancement mechanism.

    Molecular Catalysis 558, 114033 (2024).

    Rui Lu, Jiaying Luo, Xuening Wang, An Chen, Yiwen Xie, Yang Xu, Tian Shang, Ruyan Li, Dongmei Jiang*, Qingfeng Zhan.


    35. Antiferromagnetic magnetostriction of IrMn detected by angular dependent exchange bias.

    Applied Physics Letters 124, 112412 (2024).

    Haoyu Lin, Kun Zheng, Jing Meng, Jiang Liu, Zhenjie Zhao, Dongmei Jiang, Yang Xu, Tian Shang, Qingfeng Zhan*.


    34. Epitaxial growth and electric control of magnetic behaviors in exchange biased IrMn/FeGa/MgO/PMN-PT heterostructures.

    Journal of Alloys and Compounds 970, 172604 (2024).

    J. Meng, X. W. Feng, C. M. Cao, Y. L. Xie, D. M. Jiang, Y. Xu, T. Shang, and Q. F. Zhan*.


    33. Enhanced photocatalytic performance of Fe-doped AgBr for organic contaminants degradation: The role of doping and mechanism insights.

    Materials Research Bulletin 170, 112567 (2024).

    Rui Lu, Lingxi Qiu, Yiwen Xie, Jiaying Luo, An Chen, Yang Xu, Tian Shang, Dongmei Jiang*, and Qingfeng Zhan.


    32. Absence of topological Hall effect in FexRh100−x epitaxial films: Revisiting their phase diagram.

    Physical Review B 108, 144437 (2023).

    X. Y. Zhu, H. Li, J. Meng, X. W. Feng, Z. X. Zhen, H. Y. Lin, B. C. Yu, W. J. Cheng, D. M. Jiang, Y. Xu, T. Shang*, and Q. F. Zhan*.


    31. Z-scheme Bi2SiO5/Ni-doped Ag6Si2O7 heterojunction with remarkable photocatalytic performance for MO degradation with enhanced light absorption ability: Adjustment of electron transfer path and energy band structure.

    Applied Surface Science 642, 158465 (2024).

    An Chen, Yiwen Xie, Rui Lu, Jiaying Luo, Tian Shang, Yang Xu, Dongmei Jiang*, and Qingfeng Zhan.


    30. Fourfold magnetic anisotropy varied by interfacial exchange coupling in epitaxial Fe/IrMn bilayers.

    Applied Physics Letters 123, 122402 (2023).

    Xinwei Feng, Yangping Wang, Jing Meng, Haoyu Lin, Xiaoyan Zhu, Yali Xie*, Dongmei Jiang, Yang Xu, Tian Shang, and Qingfeng Zhan*


    29. Neutron scattering and muon-spin spectroscopy studies of the magnetic triangular-lattice compounds A2La2NiW2O12 (A = Sr,Ba).

    Physical Review Materials 7, 074403 (2023).

    B. C. Yu#, J. Y. Yang#, D. J. Gawryluk, Y. Xu, Q. F. Zhan, T. Shiroka, and T. Shang*.


    28. Nonlinear phonon Hall effects in ferroelectrics: Existence and nonvolatile electrical control.

    Physical Review B 107, L241107 (2023).

    Wei Luo#, Junyi Ji#, Peng Chen, Yang Xu, Lifa Zhang*, Hongjun Xiang*, and Laurent Bellaiche.


    27. Fully gapped superconductivity with preserved time-reversal symmetry in NiBi3 single crystals.

    Physical Review B 107, 174513 (2023).

    T. Shang*, J. Meng, X. Y. Zhu, H. Zhang, B. C. Yu, Z. X. Zhen, Y. H. Wang, Y. Xu, Q. F. Zhan, D. J. Gawryluk, and T. Shiroka.


    26. Stabilizing high-frequency magnetic properties of stretchable CoFeB films by ribbon-patterned periodic wrinkles.

    ACS Applied Materials & Interfaces 15, 15014 (2023).

    Kelei Xue, Zheng Zhou*, Huali Yang, Anyang Cui, Wenjuan Cheng*, Dongmei Jiang, Yang Xu, Tian Shang, and Qingfeng Zhan*.


    25. Fourfold magnetic anisotropy induced in CoFeB/IrMn bilayers by interfacial exchange coupling. 

    New Journal of Physics 25, 023005 (2023).

    Xinwei Feng, Jing Meng, Xiaoyan Zhu, Kelei Xue, Yali Xie, Dongmei Jiang, Yang Xu, Tian Shang, Yong Hu, and Qingfeng Zhan*.


    24. Evidence of unconventional pairing in the quasi-two-dimensional CuIr2−xRuxTe4 superconductor.

    Physical Review B 106, 144505 (2022).

    T. Shang*, Y. Chen#, W. Xie, D. J. Gawryluk, R. Gupta, R. Khasanov, X. Y. Zhu, H. Zhang, Z. X. Zhen, B. C. Yu, Z. Zhou, Y. Xu, Q. F. Zhan, E. Pomjakushina, H. Q. Yuan, and T. Shiroka.


    23. Unconventional superconductivity in topological Kramers nodal-line semimetals.

    Science Advances 8, eabq6589 (2022).

    Tian Shang*, Jianzhou Zhao#, Lun-Hui Hu#, Junzhang Ma, Dariusz Jakub Gawryluk, Xiaoyan Zhu, Hui Zhang, Zhixuan Zhen, Bocheng Yu, Yang Xu, Qingfeng Zhan, Ekaterina Pomjakushina, Ming Shi, and Toni Shiroka*.


    22. Effects of manganese-doping on the enhanced solar photocatalytic properties of AgBr catalyst: Mechanism and DFT modeling.

    Applied Surface Science 607,154993 (2023).

    Yiwen Xie, Wenjie Ding, Jianquan Zhao, Jiaying Luo, Rui Lu, Tian Shang, Yang Xu, Dongmei Jiang*, and Qingfeng Zhan.


    21. Positive stretching dependence of resonance frequency in CoFeB films modulated by lateral growth pre-strain.

    Journal of Alloys and Compounds 926, 166955 (2022).

    Shangjie Fu, Kelei Xue, Guozhi Chai, Yang Xu, Tian Shang, Wenjuan Cheng*, Dongmei Jiang, and Qingfeng Zhan*.


    20. Surface modified Bi2SiO5 microflowers with Fe3+ doping for efficient degradation of organic contaminants.

    Journal of Alloys and Compounds 926, 166866 (2022).

    Jiaying Luo, Jianquan Zhao, Yiwen Xie, Rui Lu, Tian Shang, Yang Xu, Dongmei Jiang*, and Qingfeng Zhan.


    19. Exchange-coupling-induced fourfold magnetic anisotropy in CoFeB/FeRh bilayer grown on SrTiO3(001).

    Chinese Physics B 31, 087503 (2022).

    Qingrong Shao, Jing Meng, Xiaoyan Zhu, Yali, Xie, Wenjuan Cheng, Dongmei Jiang, Yang Xu, Tian Shang, and Qingfeng Zhan*.


    18. Magnetocrystalline anisotropy of epitaxially grown FeRh/MgO(001) films.

    Journal of Alloys and Compounds 917, 165566 (2022).

    Xiaoyan Zhu, Yang Li, Yali Xie, Qian Qiu, Cuimei Cao, Xiao Hu, Wenhui Xie, Tian Shang, Yang Xu, Lin Sun, Wenjuan Cheng, Dongmei Jiang, and Qingfeng Zhan*.


    17. Spin order and fluctuations in the EuAl4 and EuGa4 topological antiferromagnets: A μSR study.

    Physical Review B 105, 014423 (2022).

    X. Y. Zhu#, H. Zhang#, D. J. Gawryluk, Z. X. Zhen, B. C. Yu, S. L. Ju, W. Xie, D. M. Jiang, W. J. Cheng, Y. Xu, M. Shi, E. Pomjakushina, Q. F. Zhan, T. Shiroka*, and T. Shang*.


    16.  Facile synthesis of δ-Bi2O3 particles/ rod-like Bi4O7 composite with enhanced visible light driven photocatalytic performance.

    Journal of Materials Science: Materials in Electronics (2022).

    Jiaying Luo, Shicheng Jia, Jianquan Zhao, Dongmei Jiang*, Qingfeng Zhan, Tian Shang, and Yang Xu.


    15. Electronic Reconstruction Forming a C2-symmetric Dirac Semimetal in Ca3Ru2O7.

    npj Quantum Materials 6 29 (2021).

    M. Horio*, Q. Wang, V. Granata, K. P. Kramer, Y. Sassa, S. Jöhr, D. Sutter, A. Bold, L. Das, Y. Xu, R. Frison, R. Fittipaldi, T. K. Kim, C. Cacho, J. E. Rault, P. Le Fèvre, F. Bertran, N. C. Plumb, M. Shi, A. Vecchione, M. H. Fischer, and J. Chang*.


    14. Two-carrier Magnetoresistance: Applications to Ca3Ru2O7.

    Journal of the Physical Society of Japan 90, 054702 (2021).

    L. Das, Y. Xu, T. Shang, A. Steppke, M. Horio, J. Choi, S. Jöhr, K. von Arx, J. Mueller, D. Biscette, X. Zhang, A. Schilling, V. Granata, R. Fittipaldi, A. Vecchione, and J. Chang*.


    13. Magnetism and anomalous transport in the Weyl semimetal PrAlGe: possible route to axial gauge

    fields.

    npj Quantum Mater. 5, 5 (2020).

    D. Destraz*, L. Das, S. Tsirkin, Y. Xu, Titus Neupert, J. Chang*, A. Schilling, Adolfo G. Grushin, Joachim Kohlbrecher, Lukas Keller, Pascal Puphal, Ekaterina Pomjakushina and Jonathan S. White*.


    12. Prominent role of spin-orbit coupling in FeSe revealed by inelastic neutron scattering.

    Physical Review X 7, 021025 (2017).

    M. W. Ma, P. Bourges, Y. Sidis, Y. Xu, S. Y. Li, B. Y. Hu, J. R. Li, F. Wang, and Y. Li*.


    11. Observation of two superconducting domes under pressure in tetragonal FeS.

    npj Quantum Materials 2, 49 (2017).

    J. Zhang, F. L. Liu, T. P. Ying, N. N. Li, Y. Xu, L. P. He, X. C. Hong, Y. J. Yu, M. X. Wang, W. G. Yang*, and S. Y. Li*.


    10. Nodeless superconducting gaps in noncentrosymmetric superconductor PbTaSe2 with topological bulk nodal lines.

    Physical Review B 93, 020503(R) (2016).

    M. X. Wang, Y. Xu, L. P. He, J. Zhang, X. C. Hong, P. L. Cai, Z. B. Wang, J. K. Dong, and S. Y. Li*.


    9. Fully gapped superconducting state in Au2Pb: a natural candidate for topological superconductor.

    Europhysics Letters 116, 67002 (2016).

    Y. J. Yu, Y. Xu, Y. Xing, J. Zhang, T. P. Ying, X. C. Hong, M. X. Wang, X. Zhang, S. Jia, J. Wang*, and S. Y. Li*.


    8. Nodeless superconductivity in the noncentrosymmetric superconductor BiPd.

    Superconductor Science and Technology 29, 065001 (2016).

    X. B. Yan, Y. Xu, L. P. He, J. K. Dong, Hwanbeom Cho, D. C. Peets, Je Geun Park, and S. Y. Li*.


    7. Nodal superconductivity in FeS: Evidence from quasiparticle heat transport.

    Physical Review B 94, 100504(R) (2016).

    T. P. Ying, X. F. Lai, X. C. Hong, Y. Xu, L. P. He, J. Zhang, M. X. Wang, Y. J. Yu, F. Q. Huang*, S. Y. Li*.


    6. Electric-field control of magnetism in Co40Fe40B20/(1-x)Pb(Mg1/3Nb2/3)O3-xPbTiO3 multiferroic heterostructures with different ferroelectric phases.

    ACS Applied Materials & Interfaces 8, 3784 (2016).

    Yan Liu, Yonggang Zhao*, Peisen Li, Sen Zhang, Dalai Li, Hao Wu, Aitian Chen, Y. Xu, X. F. Han, S. Y. Li, Di Lin, and Haosu Luo.


    5. Nodeless superconducting gap in the caged-type superconductors Y5Rh6Sn18 and Lu5Rh6Sn18.

    Superconductor Science and Technology 28, 105008 (2015).

    Z. Zhang, Y. Xu, C. N. Kuo, X. C. Hong, M. X. Wang, P. L. Cai, J. K. Dong, C. S. Lue, and S. Y. Li*.


    4. Superconductivity at 2.5K in the new transition-metal chalcogenide Ta2PdSe5.

    Superconductor Science and Technology 28, 11150015 (2015).

    J. Zhang, J. K. Dong, Y. Xu, J. Pan, L. P. He, L. J. Zhang, and S. Y. Li*.


    3. Structural and transport properties of the Weyl semimetal NbAs at high pressure.

    Chinese Physics Letters 32, 097102 (2015).

    J. Zhang, F. L. Liu, J. K. Dong, Y. Xu, N. N. W. G. Yang, and S. Y. Li*.


    2. Heat transport in RbFe2As2 single crystals: Evidence for nodal superconducting gap.

    Physical Review B 91, 024502 (2015).

    Z. Zhang, A. F. Wang, X. C. Hong, J. Zhang, B. Y. Pan, J. Pan, Y. Xu, X. G. Luo, X. H. Chen, and S. Y. Li*.


    1. Multigap nodeless superconductivity in nickel chalcogenide TlNi2Se2.

    Physical Review B 90, 060504(R) (2014).

    X. C. Hong, Z. Zhang, S. Y. Zhou, J. Pan, Y. Xu, Hangdong Wang, Qianhui Mao, Minghu Fang, J. K. Dong, and S. Y. Li*.

    荣誉及奖励