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Eun-Gook Moon

Korea Advanced Institute of Science and Technology · Physics and Astronomy

About the Lab

Professor Eun-Gook Moon's research lab specializes in strongly correlated quantum systems, with a focus on topological quantum matter, quantum phase transitions, and emergent phenomena in low-dimensional materials. The lab investigates quantum spin liquids, nodal-ring semimetals, and systems with quadratic band touching, employing advanced theoretical methods such as renormalization group theory, large-Nf expansions, and topological field theory. Key interests include the interplay of electron correlations, spin-orbit coupling, and gauge structures in quantum materials, with applications to topological quantum computation and unconventional superconductivity.

quantum spin liquidstopological quantum matterstrongly correlated electronsquantum phase transitionstopological superconductivity

Research Overview

Papers
94
Total Citations
1,709
Papers (5y)
34
Primary Field
Physics and Astronomy

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
34total
2022
2023
2024
2025
2026
Citations per year (5y)
291total
20222023202420252026

Selected Papers

15
1
Article|257 citations·2013
Non-Fermi-Liquid and Topological States with Strong Spin-Orbit Coupling
Eun-Gook Moon, Cenke Xu, Yong Baek Kim, Leon Balents
SJR Q1Physical Review LettersOA

We argue that a class of strongly spin-orbit-coupled materials, including some pyrochlore iridates and the inverted band gap semiconductor HgTe, may be described by a minimal model consisting of the Luttinger Hamiltonian supplemented by Coulomb interactions, a problem studied by Abrikosov and collaborators. It contains twofold degenerate conduction and valence bands touching quadratically at the zone center. Using modern renormalization group methods, we update and extend Abrikosov's classic wor

Condensed Matter PhysicsPhysics and Astronomy
2
Article|235 citations·2017
Thermodynamic evidence for a nematic phase transition at the onset of the pseudogap in YBa2Cu3Oy
Yuki Sato, S. Kasahara, H. Murayama, Y. Kasahara, Eun-Gook Moon, Terukazu Nishizaki, T. Loew, J. Porras, B. Keimer, T. Shibauchi, Yuji Matsuda
SJR Q1Nature PhysicsOA
Condensed Matter PhysicsPhysics and Astronomy
3
Article|163 citations·2016
Long-range Coulomb interaction in nodal-ring semimetals
Yejin Huh, Eun-Gook Moon, Yong Baek Kim
SJR Q1Physical review. B./Physical review. BOA

Recently there have been several proposals of materials predicted to be nodal-ring semimetals, where zero energy excitations are characterized by a nodal ring in the momentum space. This class of materials falls between the Dirac-like semimetals and the more conventional Fermi-surface systems. As a step towards understanding this unconventional system, we explore the effects of the long-range Coulomb interaction. Due to the vanishing density of states at the Fermi level, Coulomb interaction is o

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
4
Article|119 citations·2007
Ab initiostudy of dihydrogen binding in metal-decorated polyacetylene for hydrogen storage
Hoonkyung Lee, Woon Ih Choi, Manh Cuong Nguyen, Moon-Hyun Cha, Eun-Gook Moon, Jisoon Ihm
SJR Q1Physical Review B

Using first-principles calculations based on the density-functional theory, we perform a detailed study of the dihydrogen $({\mathrm{H}}_{2})$ binding in cis- and trans-polyacetylene decorated with transition metal atoms. First, we investigate the origin of metal-dihydrogen bonding and observe the hybridization of ${e}_{g}$ $({t}_{2g})$ orbitals of the Ti atom with the $\ensuremath{\sigma}$ $({\ensuremath{\sigma}}^{*})$ orbitals of the ${\mathrm{H}}_{2}$ molecules in octahedral geometries, which

Materials ChemistryMaterials Science
5
Article|89 citations·2020
Thermodynamic evidence for field-angle dependent Majorana gap in a Kitaev spin liquid
O. Tanaka, Yuta Mizukami, Ryo Harasawa, K. Hashimoto, Kyusung Hwang, Nobuyuki Kurita, Hidekazu Tanaka, Satoshi Fujimoto, Yuji Matsuda, Eun-Gook Moon, T. Shibauchi
arXiv (Cornell University)OA

The exactly-solvable Kitaev model of two-dimensional honeycomb magnet leads to a quantum spin liquid (QSL) characterized by Majorana fermions, relevant for fault-tolerant topological quantum computations. In the high-field paramagnetic state of $\alpha$-RuCl3, half-integer quantization of thermal Hall conductivity has been reported as a signature of edge current, but the bulk nature of this state remains elusive. Here, from high-resolution heat capacity measurements under in-plane field rotation

Condensed Matter PhysicsPhysics and Astronomy
6
Article|88 citations·2014
Quantum criticality of topological phase transitions in three-dimensional interacting electronic systems
Bohm‐Jung Yang, Eun-Gook Moon, Hiroki Isobe, Naoto Nagaosa
SJR Q1Nature PhysicsOA
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
7
Article|87 citations·2022
Rydberg quantum wires for maximum independent set problems
Minhyuk Kim, Kangheun Kim, Jaeyong Hwang, Eun-Gook Moon, Jaewook Ahn
SJR Q1Nature PhysicsOA
Artificial IntelligenceComputer Science
8
Article|56 citations·2010
Quantum-critical Pairing with Varying Exponents
Eun-Gook Moon, Andrey V. Chubukov
SJR Q3Journal of Low Temperature PhysicsOA
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
9
Article|51 citations·2019
Diagonal nematicity in the pseudogap phase of HgBa2CuO4+δ
H. Murayama, Yuki Sato, Ryosuke Kurihara, S. Kasahara, Yuta Mizukami, Y. Kasahara, Hiroshi Uchiyama, A. Yamamoto, Eun-Gook Moon, Jingnan Cai, Jacob Freyermuth, M. Greven
Institutional Repositories DataBase (IRDB)OA
Condensed Matter PhysicsPhysics and Astronomy
10
Article|44 citations·2012
Skyrmions with quadratic band touching fermions: A way to achieve charge4esuperconductivity
Eun-Gook Moon
SJR Q1Physical Review BOA

We study Skyrmion quantum numbers, charge, and statistics, in $(2+1)$ dimension induced by quadratic band touching (QBT) fermions. It is shown that induced charge of Skyrmions is twice bigger than corresponding Dirac particles' and their statistics are always bosonic. Applying to the Bernal stacking bilayer graphene, we show that Skyrmions of quantum spin Hall are charge $4e$ bosons, so their condensation realizes charge $4e$ superconductivity. The phase transition could be of second order, and

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
11
Article|38 citations·2022
Rank-2 toric code in two dimensions
Yun-Tak Oh, Jintae Kim, Eun-Gook Moon, Jung Hoon Han
SJR Q1Physical review. B./Physical review. BOA

We study a two-dimensional spin model obtained by ``Higgsing'' the rank-2 U(1) lattice gauge theory (LGT) with scalar or vector charges on the ${L}_{x}\ifmmode\times\else\texttimes\fi{}{L}_{y}$ square lattice under the periodic boundary condition (PBC). There are $p$ degrees of freedom per orbital and three orbitals per unit cell in the spin model. The resulting spin model is a stabilizer code consisting of three mutually commuting projectors that are, in turn, obtained by Higgsing the mutually

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
12
Article|36 citations·2022
Identification of a Kitaev quantum spin liquid by magnetic field angle dependence
Kyusung Hwang, Ara Go, Ji Heon Seong, T. Shibauchi, Eun-Gook Moon
SJR Q1Nature CommunicationsOA

Quantum spin liquids realize massive entanglement and fractional quasiparticles from localized spins, proposed as an avenue for quantum science and technology. In particular, topological quantum computations are suggested in the non-abelian phase of Kitaev quantum spin liquid with Majorana fermions, and detection of Majorana fermions is one of the most outstanding problems in modern condensed matter physics. Here, we propose a concrete way to identify the non-abelian Kitaev quantum spin liquid b

Condensed Matter PhysicsPhysics and Astronomy
13
Article|36 citations·2013
Theory of Topological Quantum Phase Transitions in 3D Noncentrosymmetric Systems
Bohm‐Jung Yang, M. S. Bahramy, Ryotaro Arita, Hiroki Isobe, Eun-Gook Moon, Naoto Nagaosa
SJR Q1Physical Review LettersOA

We construct a general theory describing the topological quantum phase transitions in 3D systems with broken inversion symmetry. While the consideration of the system's codimension generally predicts the appearance of a stable metallic phase between the normal and topological insulators, it is shown that a direct topological phase transition between two insulators is also possible when an accidental band crossing occurs along directions with high crystalline symmetry. At the quantum critical poi

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
14
Article|33 citations·2022
Significant thermal Hall effect in the 3d cobalt Kitaev system Na2Co2TeO6
Heejun Yang, Chaebin Kim, Ysun Choi, Jun Han Lee, Gaoting Lin, Jie Ma, Marie Kratochvílová, Petr Proschek, Eun-Gook Moon, Ki Hoon Lee, Yoon Seok Oh, Je‐Geun Park
SJR Q1Physical review. B./Physical review. BOA

Kitaev physics has recently attracted attention in condensed matter for its anticipated quantum spin liquid (QSL) state. The thermal transport measurement is crucial for probing the features of charge-neutral quasiparticles. In this letter, we report a significant thermal Hall effect in ${\mathrm{Na}}_{2}{\mathrm{Co}}_{2}\mathrm{Te}{\mathrm{O}}_{6}$ (NCTO), a Kitaev QSL candidate, when the magnetic field is applied along the out-of-plane direction of the honeycomb plane. The thermal conductivity

Condensed Matter PhysicsPhysics and Astronomy
15
Article|33 citations·2019
Emergent Anisotropic Non-Fermi Liquid at a Topological Phase Transition in Three Dimensions
SangEun Han, Changhee Lee, Eun-Gook Moon, Hongki Min
SJR Q1Physical Review LettersOA

Understanding correlation effects in topological phases and their transitions is a cutting-edge area of research in recent condensed matter physics. We study topological quantum phase transitions (TQPTs) between double-Weyl semimetals (DWSMs) and insulators, and argue that a novel class of quantum criticality appears at the TQPT characterized by emergent anisotropic non-Fermi-liquid behaviors, in which the interplay between the Coulomb interaction and electronic critical modes induces not only a

Atomic and Molecular Physics, and OpticsPhysics and Astronomy

Research Areas

Condensed Matter PhysicsAtomic and Molecular Physics, and OpticsArtificial IntelligenceElectronic, Optical and Magnetic MaterialsMaterials ChemistryMathematical Physics

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