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杨望 教授

招生专业: 凝聚态物理

电话:

邮箱: wyang@nankai.edu.cn

办公地点:

个人资料

  • 性别:
  • 部门: 伟德BETVLCTOR1946
  • 联系电话:
  • 通讯地址:
  • 职称: 教授
  • 电子邮箱: wyang@nankai.edu.cn
  • 办公地址:

教育经历

2012年9月至2018年9月:美国加州大学圣地亚哥分校,物理学,博士
2008年9月至2012年7月:清华大学,物理学,学士

工作经历

2023年6月至今:伟德bv1946官网,伟德BETVLCTOR1946,教授
2018年9月至2023年4月:加拿大不列颠哥伦比亚大学,物理系及Stewart Blusson量子物质研究所,博士后

个人简介

杨望,伟德BETVLCTOR1946教授,博士生导师,国家“四青”人才,伟德bv1946官网“百青”人才。2018年在加州大学圣地亚哥分校获物理学博士学位,导师为吴从军教授。在不列颠哥伦比亚大学先后于2018年至2021年及2021年至2023年在Ian Affleck教授研究组及Robert Raussendorf教授研究组从事博士后工作。研究方向为凝聚态强关联理论及量子计算,包括一维强关联系统、量子可积模型的动力学、基于测量的量子计算、非常规超导体等。迄今在包括Nature,Nature Physics,Physical Review Letters,Quantum,Applied Physics Reviews,SciPost Physics,Physical Review B,Physical Review research等期刊上正式发表论文共22篇。

研究方向

1. 一维强关联物理

应用共形场论和玻色化的解析方法,结合DMRG数值,研究一维强关联凝聚态问题,包括量子磁性、准一维Kitaev材料、纳米通道中的氦-4超流体等。  

 

2. 量子可积系统

应用Bethe ansatz的方法研究一维可积自旋链中的自旋动力学。   


3. 基于测量的量子计算

在具有对称性保护拓扑序的凝聚态体系中实现基于测量的量子计算。


4. 非常规超导体

具有多分量费米子配对、非平凡拓扑、时间反演对称性自发破缺、空间反射对称性破缺等性质的非常规超导体问题。

研究成果

全部文章见https://scholar.google.com/citations?user=3BUZ_xYAAAAJ 

 

正式发表文章:

* corresponding author, # co-first author


22. Wang Yang, Alberto Nocera, Chao Xu, Ian Affleck, Nonsymmorphic spin-space cubic groups and SU(2)_1 conformal invariance in one-dimensional spin-1/2 models, SciPost Phys. 17, 097 (2024).

21. Wang Yang, Chao Xu, Shenglong Xu, Alberto Nocera, Ian Affleck, Nonsymmorphic Luttinger liquids in generalized antiferromagnetic Kitaev spin-1/2 chain, Phys. Rev. B 109, L180403 (2024).

20. Robert Raussendorf, Wang Yang, Arnab Adhikary, Measurement-based quantum computation in finite one-dimensional systems: string order implies computational power, Quantum 7, 1215 (2023). 

19. Chao Xu#, Wang Yang#, Congjun Wu*, Frustrated superconducting junction with tri-component pairing gap functions, Phys. Rev. B 108, 094509 (2023). 

18. Wang Yang, Chao Xu, Alberto Nocera, Ian Affleck, Origin of nonsymmorphic bosonization formulas in generalized antiferromagnetic Kitaev spin-1/2 chains from a renormalization-group perspective, Phys. Rev. B 106, 064425 (2022).

17. Chao Xu, Wang Yang, Nonrelativistic axion electrodynamics in p+is superconductors, Phys. Rev. B 106, 014517 (2022).      

16. Xinhe Wang#, Wei Yang#, Wang Yang#, Yuan Cao#, Xiaoyang Lin*, Guodong Wei, Haichang Lu, Peizhe Tang, Weisheng Zhao*, Spin Manipulation by Giant Valley-Zeeman Spin-Orbit Field in Atom-Thick WSe_2, Appl. Phys. Rev. 9, 031402 (2022). 

15. Wang Yang, Alberto Nocera, Paul Herringer, Robert Raussendorf, and Ian Affleck, Symmetry analysis of bond-alternating Kitaev spin chains and ladders, Phys. Rev. B 105, 094432 (2022).

14. Wang Yang, Alberto Nocera, Erik S Sørensen, Hae-Young Kee, Ian Affleck, Classical spin order near the antiferromagnetic Kitaev point in the spin-1/2  Kitaev-Gamma chain, Phys. Rev. B 103, 054437 (2021). 

13. Wang Yang, Chao Xu, Congjun Wu, Single branch of chiral Majorana modes from doubly degenerate Fermi surfaces, Phys. Rev. Research 2, 042047(R) (2020).

12. Wang Yang, Ian Affleck, Shell model for superfluids in rough-walled nanopores, Phys. Rev. B 102, 205426 (2020). 

11. Wang Yang, Alberto Nocera, Ian Affleck, Spin wave theory of a one-dimensional generalized Kitaev model, Phys. Rev. B 102, 134419 (2020). 

10. Wang Yang, Alberto Nocera, Ian Affleck, Comprehensive study of the phase diagram of the spin-1/2 Kitaev-Heisenberg-Gamma chain, Phys. Rev. Research 2, 033268 (2020). 

9.   Anup Kumar Bera*, Jianda Wu*, Wang Yang*, Robert Bewley, Martin Boehm, Jianhui Xu, Maciej Bartkowiak, Oleksandr Prokhnenko, Bastian Klemke, ATM Nazmul Islam, Joseph Mathew Law, Zhe Wang, Bella Lake*, Dispersions of many-body Bethe strings, Nature Physics 16, 625 (2020).

8.   Wang Yang, Alberto Nocera, Tarun Tummuru, Hae-Young Kee, Ian Affleck, Phase diagram of the spin-1/2 Kitaev-Gamma chain and emergent SU(2) symmetry, Phys. Rev. Lett. 124, 147205 (2020). 

7.   Wang Yang, Jianda Wu, Shenglong Xu, Zhe Wang, Congjun Wu, One-dimensional quantum spin dynamics of Bethe string states, Phys. Rev. B 100, 184406 (2019).

6.   Zhe Wang, M Schmidt, Alois Loidl, Jianda Wu, Haiyuan Zou, Wang Yang, Chao Dong, Y Kohama, K Kindo, DI Gorbunov, S Niesen, O Breunig, J Engelmayer, T Lorenz, Quantum critical dynamics of a Heisenberg-Ising chain in a longitudinal field: many-body strings versus fractional excitations, Phys. Rev. Lett. 123, 067202 (2019). 

5.   Jianda Wu, Wang Yang, Congjun Wu, Qimiao Si, Quantum critical dynamics for a prototype class of insulating antiferromagnets, Phys. Rev. B 97, 224405 (2018). 

4.   Zhe Wang, Jianda Wu, Wang Yang, Anup Kumar Bera, Dmytro Kamenskyi, A. T. M. Nazmul Islam, Shenglong Xu, Joseph Matthew Law, Bella Lake, Congjun Wu, Alois Loidl, Experimental observation of Bethe strings, Nature 554, 219 (2018). 

3.   Wang Yang, Tao Xiang, and Congjun Wu, Majorana surface modes of nodal topological pairings in spin-3/2 semi-metals, Phys. Rev. B 96, 144514 (2017). 

2.   Zhe Wang, Jianda Wu, Shenglong Xu, Wang Yang, Congjun Wu, Anup Kumar Bera, A. T. M. Nazmul Islam, Bella Lake, Dmytro Kamenskyi, Papori Gogoi, Hans Engelkamp, Nanlin Wang, Joachim Deisenhofer, Alois Loidl, From confined spinons to emergent fermions: Observation of elementary magnetic excitations in a transverse-field Ising chain, Phys. Rev. B 94, 125130 (2016). 

1.   Wang Yang, Yi Li, Congjun Wu, Topological septet pairing with spin-3/2 fermions – high partial-wave channel counterpart of the He3-B phase, Phys. Rev. Lett. 117, 075301 (2016).   


预印本:

5.   Wang Yang, Arnab Adhikary, Robert Raussendorf, Measurement-based quantum computation in symmetry protected topological states of one-dimensional integer spin systems, arxiv:2409.16109 (2024).

4.   Wang Yang, Chao Xu, Alberto Nocera, Ian Affleck, Left-left-right-right magnetic order in spin-1/2 Kitaev-Heisenberg chain, arXiv:2408.07968 (2024).

3.   Arnab Adhikary#, Wang Yang#, Robert Raussendorf, Counter-intuitive yet efficient regimes for measurement based quantum computation on symmetry protected spin chains, arXiv:2307.08903 (2023). 

2.   Wang Yang, Alberto Nocera, Chao Xu, Hae-Young Kee, Ian Affleck, Counter-rotating spiral, zigzag, and 120 orders from coupled-chain analysis of Kitaev-Gamma-Heisenberg model, and relations to honeycomb iridates, arXiv:2207.02188 (2022).

1.   Wang Yang, Alberto Nocera, Chao Xu, Arnab Adhikary, Ian Affleck, Emergent SU(2)_1 conformal symmetry in the spin-1/2 Kitaev-Gamma chain with a Dzyaloshinskii-Moriya interaction, arXiv:2204.13810 (2022).

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