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TQMTG @ Kyung Hee University
  • Home
  • People
  • News
  • Research
  • Publications
  • Teaching
  • Gallery
  • Contact
  • More
    • Home
    • People
    • News
    • Research
    • Publications
    • Teaching
    • Gallery
    • Contact

Topological magnons

  • "Topological Magnons with Nodal-Line and Triple-Point Degeneracies: Implications for Thermal Hall Effect in Pyrochlore Iridates" by K. Hwang, N. Trivedi, and M. Randeria, Phys. Rev. Lett. 125, 047203 (2020).


  • "Topological Magnons: A Review" by P. A. McClarty, Annu. Rev. Condens. Matter Phys. 2022. 13:171–90.

  • "Topological Phases in Magnonics" by F. Zhuo, J. Kang, A. Manchon, Z. Cheng, Adv. Physics Res. 2025, 4, 2300054.

  • "Magnons in van der Waals Antiferromagnetic Materials" by Y. Wang, J. Xia, H. Xu, G. Lan, X. Han, G. Yu, Adv. Funct. Mater. 2025,e17690.

Many-body physics of quasiparticles in quantum magnets

  • "Quasiparticle-continuum level repulsion in a quantum magnet" by K. W. Plumb, K. Hwang, Y. Qiu, Leland W. Harriger, G. E. Granroth, Alexander I. Kolesnikov, G. J. Shu, F. C. Chou, Ch. Rüegg, Y. B. Kim & Y.-J. Kim, Nat. Phys. 12, 224–229 (2016).

  • "Theory of triplon dynamics in the quantum magnet BiCu2⁢PO6" by K. Hwang and Y. B. Kim, Phys. Rev. B 93, 235130 (2016).


  • "Colloquium: Spontaneous magnon decays" by M. E. Zhitomirsky and A. L. Chernyshev, Rev. Mod. Phys. 85, 219 (2013).

Quantum spin liquids and fractionalized excitations

  • "Identification of a Kitaev quantum spin liquid by magnetic field angle dependence" by K. Hwang, A. Go, J. H. Seong, T. Shibauchi & E.-G. Moon, Nat. Commun. 13, 323 (2022).

  • "Thermodynamic evidence for a field-angle-dependent Majorana gap in a Kitaev spin liquid" by O. Tanaka, Y. Mizukami, R. Harasawa, K. Hashimoto, K. Hwang, N. Kurita, H. Tanaka, S. Fujimoto, Y. Matsuda, E.-G. Moon & T. Shibauchi, Nat. Phys. 18, 429–435 (2022).


  • "Quantum spin liquids: A review" by L. Savary and L. Balents, Rep. Prog. Phys. 80, 016502 (2017).

  • "Quantum spin liquid states" by Y. Zhou, K. Kanoda, and T.-K. Ng, Rev. Mod. Phys. 89, 025003 (2017).

  • "Quantum spin liquids" by C. Broholm, R. J. Cava, S. A. Kivelson, D. G. Nocera, M. R. Norman, and T. Senthil, Science 367, eaay0668 (2020).

  • "A field guide to spin liquids" by J. Knolle and R. Moessner, Annu. Rev. Condens. Matter Phys. 10, 451 (2019).

  • "Concept and realization of Kitaev quantum spin liquids" by H. Takagi, T. Takayama, G. Jackeli, G. Khaliullin, and S. E. Nagler, Nat. Rev. Phys. 1, 264 (2019).

  • "Hunting Majorana fermions in Kitaev magnets" by Y. Motome and J. Nasu, J. Phys. Soc. Jpn. 89, 012002 (2020).

  • "Kitaev quantum spin liquids" by Y. Matsuda, T. Shibauchi, and H.-Y. Kee, Rev. Mod. Phys. 97, 045003 (2025).

  • 황규성, “키타예프 양자 스핀 액체”, KPS 물리학과 첨단기술, 2022년 9월 31권 9호.

Anyon condensation and anyon confinement

  • "Anyon condensation and confinement transition in a Kitaev spin liquid bilayer" by K. Hwang, Phys. Rev. B 109, 134412 (2024).

  • "Vison condensation and spinon confinement in a kagome-lattice ℤ2 spin liquid: A numerical study of a quantum dimer model" by K. Hwang, Phys. Rev. B 110, 014426 (2024).

Lindblad open quantum systems

  • "Mixed-State Quantum Spin Liquids and Dynamical Anyon Condensations in Kitaev Lindbladians" by K. Hwang, Quantum 8, 1412 (2024).

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