Skip to main content

Jegun Park

Seoul National University · 材料科学

研究室紹介

Professor Jegun Park's research lab specializes in quantum magnetism and 2D quantum materials, with a focus on van der Waals materials that exhibit exotic magnetic and multiferroic properties. The lab explores antiferromagnetic and ferromagnetic systems, particularly those with strong spin-orbit coupling and Kitaev interactions, using advanced experimental techniques such as inelastic neutron scattering and magneto-optic spectroscopy. A key direction is the manipulation of magnetic states via electrical currents and external fields, aiming to enable energy-efficient spintronic devices. The lab also investigates magnon-phonon coupling and anharmonic excitations in non-collinear magnets to uncover new quasiparticle phenomena and quantum phase transitions.

2D magnetsvan der Waals materialsquantum magnetismmagnon-phonon couplingspintronic devices

Research Overview

Papers
303
Total Citations
18,735
Papers (5y)
107
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
107total
2021
2022
2023
2024
2025
Citations per year (5y)
1,729total
20212022202320242025

Selected Papers

15
1
Review|1,627 citations·2018
Magnetism in two-dimensional van der Waals materials
Kenneth S. Burch, David Mandrus, Je‐Geun Park
SJR Q1NatureOA
Materials ChemistryMaterials Science
2
Article|1,060 citations·2016
Ising-Type Magnetic Ordering in Atomically Thin FePS3
Jae‐Ung Lee, Sungmin Lee, Ji Hoon Ryoo, Soonmin Kang, Tae Yun Kim, Pilkwang Kim, Cheol-Hwan Park, Je‐Geun Park, Hyeonsik Cheong
SJR Q1Nano LettersOA

Magnetism in two-dimensional materials is not only of fundamental scientific interest but also a promising candidate for numerous applications. However, studies so far, especially the experimental ones, have been mostly limited to the magnetism arising from defects, vacancies, edges, or chemical dopants which are all extrinsic effects. Here, we report on the observation of intrinsic antiferromagnetic ordering in the two-dimensional limit. By monitoring the Raman peaks that arise from zone foldin

Materials ChemistryMaterials Science
3
Article|444 citations·2019
Suppression of magnetic ordering in XXZ-type antiferromagnetic monolayer NiPS3
Kangwon Kim, Soo Yeon Lim, Jae‐Ung Lee, Sungmin Lee, Tae Yun Kim, Kisoo Park, Gun Sang Jeon, Cheol-Hwan Park, Je‐Geun Park, Hyeonsik Cheong
SJR Q1Nature CommunicationsOA

Abstract How a certain ground state of complex physical systems emerges, especially in two-dimensional materials, is a fundamental question in condensed-matter physics. A particularly interesting case is systems belonging to the class of XY Hamiltonian where the magnetic order parameter of conventional nature is unstable in two-dimensional materials leading to a Berezinskii−Kosterlitz−Thouless transition. Here, we report how the XXZ-type antiferromagnetic order of a magnetic van der Waals materi

Materials ChemistryMaterials Science
4
Article|315 citations·2016
Exfoliation and Raman Spectroscopic Fingerprint of Few-Layer NiPS3 Van der Waals Crystals
Cheng‐Tai Kuo, Michael Neumann, Karuppannan Balamurugan, Hyun Ju Park, Soonmin Kang, Hung Wei Shiu, Jin Hyoun Kang, Byung Hee Hong, Moonsup Han, Tae Won Noh, Je‐Geun Park
SJR Q1Scientific ReportsOA

The range of mechanically cleavable Van der Waals crystals covers materials with diverse physical and chemical properties. However, very few of these materials exhibit magnetism or magnetic order, and thus the provision of cleavable magnetic compounds would supply invaluable building blocks for the design of heterostructures assembled from Van der Waals crystals. Here we report the first successful isolation of monolayer and few-layer samples of the compound nickel phosphorus trisulfide (NiPS3)

Materials ChemistryMaterials Science
5
Article|298 citations·2020
Coherent many-body exciton in van der Waals antiferromagnet NiPS3
Soonmin Kang, Kangwon Kim, Beom Hyun Kim, Jonghyeon Kim, Kyung Ik Sim, Jae‐Ung Lee, Sungmin Lee, Kisoo Park, Seokhwan Yun, Taehun Kim, Abhishek Nag, A. C. Walters
SJR Q1Nature
Materials ChemistryMaterials Science
6
Article|179 citations·2016
Opportunities and challenges of 2D magnetic van der Waals materials: magnetic graphene?
Je‐Geun Park
SJR Q2Journal of Physics Condensed MatterOA

There has been a huge increase of interests in two-dimensional van der Waals materials over the past ten years or so with the conspicuous absence of one particular class of materials: magnetic van der Waals systems. In this Viewpoint, we point it out and illustrate how we might be able to benefit from exploring these so-far neglected materials.

Materials ChemistryMaterials Science
7
Article|113 citations·2021
Antiferromagnetic Kitaev interaction inJ eff = 1/2 cobalt honeycomb materials Na3Co2SbO6 and Na2Co2TeO6
Chaebin Kim, Jaehong Jeong, Gaoting Lin, Pyeongjae Park, Takatsugu Masuda, Shinichiro Asai, Shinichi Itoh, Heung‐Sik Kim, Haidong Zhou, Jie Ma, Je‐Geun Park
SJR Q2Journal of Physics Condensed MatterOA

Abstract Finding new materials with antiferromagnetic (AFM) Kitaev interaction is an urgent issue for quantum magnetism research. We conclude that Na 3 Co 2 SbO 6 and Na 2 Co 2 TeO 6 are new honeycomb cobalt-based systems with AFM Kitaev interaction by carrying out inelastic neutron scattering experiments and subsequent analysis. The spin–orbit excitons observed at 20–28 meV in both compounds strongly support the idea that Co 2+ ions of both compounds have a spin-orbital entangled J eff = 1/2 st

Condensed Matter PhysicsPhysics and Astronomy
8
Article|111 citations·2021
Possible Persistence of Multiferroic Order down to Bilayer Limit of van der Waals Material NiI2
Hwiin Ju, Youjin Lee, Kwang-Tak Kim, In Hyeok Choi, Chang Jae Roh, Suhan Son, Pyeongjae Park, Jae Ha Kim, Taek Sun Jung, Jae Hoon Kim, Kee Hoon Kim, Je‐Geun Park
SJR Q1Nano LettersOA

Realizing a state of matter in two dimensions has repeatedly proven a novel route of discovering new physical phenomena. Van der Waals (vdW) materials have been at the center of these now extensive research activities. They offer a natural way of producing a monolayer of matter simply by mechanical exfoliation. This work demonstrates that the possible multiferroic state with coexisting antiferromagnetic and ferroelectric orders persists down to the bilayer flake of NiI 2 . By exploiting the opti

Materials ChemistryMaterials Science
9
Article|109 citations·2015
Size Dependence of Metal–Insulator Transition in Stoichiometric Fe3O4 Nanocrystals
Jisoo Lee, Soon Gu Kwon, Je‐Geun Park, Taeghwan Hyeon
SJR Q1Nano LettersOA

Magnetite (Fe3O4) is one of the most actively studied materials with a famous metal-insulator transition (MIT), so-called the Verwey transition at around 123 K. Despite the recent progress in synthesis and characterization of Fe3O4 nanocrystals (NCs), it is still an open question how the Verwey transition changes on a nanometer scale. We herein report the systematic studies on size dependence of the Verwey transition of stoichiometric Fe3O4 NCs. We have successfully synthesized stoichiometric an

Materials ChemistryMaterials Science
10
Article|108 citations·2020
Gigantic Current Control of Coercive Field and Magnetic Memory Based on Nanometer‐Thin Ferromagnetic van der Waals Fe3GeTe2
Kaixuan Zhang, Seungyun Han, Youjin Lee, Matthew J. Coak, Jung‐Hyun Kim, Inho Hwang, Suhan Son, Jeacheol Shin, Mijin Lim, Daegeun Jo, Kyoo Kim, Dohun Kim
SJR Q1Advanced MaterialsOA

Abstract Controlling magnetic states by a small current is essential for the next‐generation of energy‐efficient spintronic devices. However, it invariably requires considerable energy to change a magnetic ground state of intrinsically quantum nature governed by fundamental Hamiltonian, once stabilized below a phase‐transition temperature. Here, it is reported that, surprisingly, an in‐plane current can tune the magnetic state of the nanometer‐thin van der Waals ferromagnet Fe 3 GeTe 2 from a ha

Materials ChemistryMaterials Science
11
Article|103 citations·2021
Air-Stable and Layer-Dependent Ferromagnetism in Atomically Thin van der Waals CrPS4
Joolee Son, Suhan Son, Pyeongjae Park, Maengsuk Kim, Zui Tao, Juhyun Oh, Taehyeon Lee, Sanghyun Lee, Junghyun Kim, Kaixuan Zhang, Kwanghee Cho, Takashi Kamiyama
SJR Q1ACS Nano

Ferromagnetism in two-dimensional materials presents a promising platform for the development of ultrathin spintronic devices with advanced functionalities. Recently discovered ferromagnetic van der Waals crystals such as CrI3, readily isolated two-dimensional crystals, are highly tunable through external fields or structural modifications. However, there remains a challenge because of material instability under air exposure. Here, we report the observation of an air-stable and layer-dependent f

Materials ChemistryMaterials Science
12
Article|90 citations·2017
The low-temperature highly correlated quantum phase in the charge-density-wave 1T-TaS2 compound
Marie Kratochvílová, A. D. Hillier, Andrew Wildes, Lihai Wang, Sang‐Wook Cheong, Je‐Geun Park
SJR Q1npj Quantum MaterialsOA

Abstract A prototypical quasi-2D metallic compound, 1T-TaS 2 has been extensively studied due to an intricate interplay between a Mott-insulating ground state and a charge-density-wave order. In the low-temperature phase, 12 out of 13 Ta 4+ 5 d -electrons form molecular orbitals in hexagonal star-of-David patterns, leaving one 5 d- electron with S = ½ spin free. This orphan quantum spin with a large spin-orbit interaction is expected to form a highly correlated phase of its own. And it is most l

Electronic, Optical and Magnetic MaterialsMaterials Science
13
Article|79 citations·2016
Spontaneous decays of magneto-elastic excitations in non-collinear antiferromagnet (Y,Lu)MnO3
Joosung Oh, Manh Duc Le, Ho‐Hyun Nahm, Hasung Sim, Jaehong Jeong, T. G. Perring, Hyungje Woo, Kenji Nakajima, Seiko Ohira‐Kawamura, Z. Yamani, Yoshiyuki Yoshida, Hiroshi Eisaki
SJR Q1Nature CommunicationsOA

Abstract Magnons and phonons are fundamental quasiparticles in a solid and can be coupled together to form a hybrid quasi-particle. However, detailed experimental studies on the underlying Hamiltonian of this particle are rare for actual materials. Moreover, the anharmonicity of such magnetoelastic excitations remains largely unexplored, although it is essential for a proper understanding of their diverse thermodynamic behaviour and intrinsic zero-temperature decay. Here we show that in non-coll

Electronic, Optical and Magnetic MaterialsMaterials Science
14
Article|64 citations·2023
Tetrahedral triple-Q magnetic ordering and large spontaneous Hall conductivity in the metallic triangular antiferromagnet Co1/3TaS2
Pyeongjae Park, Woonghee Cho, Chaebin Kim, Yeochan An, Y. Kang, Maxim Avdeev, Romain Sibille, Kazuki Iida, Ryoichi Kajimoto, Ki Hoon Lee, Woori Ju, En-Jin Cho
SJR Q1Nature CommunicationsOA

Abstract The triangular lattice antiferromagnet (TLAF) has been the standard paradigm of frustrated magnetism for several decades. The most common magnetic ordering in insulating TLAFs is the 120° structure. However, a new triple- Q chiral ordering can emerge in metallic TLAFs, representing the short wavelength limit of magnetic skyrmion crystals. We report the metallic TLAF Co 1/3 TaS 2 as the first example of tetrahedral triple- Q magnetic ordering with the associated topological Hall effect (

Condensed Matter PhysicsPhysics and Astronomy
15
Article|56 citations·2011
Phase-Selective Growth of Assembled FeSe2 Nanorods from Organometallic Polymers and Their Surface Magnetism
Juan Xu, Kwonho Jang, Je–Ho Lee, Hae Jin Kim, Jaehong Jeong, Je‐Geun Park, Seung Uk Son
SJR Q2Crystal Growth & Design

By an organometallic approach based on 1,2,3-triselena[3]ferrocenophane, assembled FeSe 2 nanorods were phase-selectively prepared. Abstraction of the central selenium from 1,2,3-triselena[3]ferrocenophane by reaction with triphenylphosphite resulted in organometallic polymers through Se–Se bond formation. Successive heating of the polymers in the presence of oleylamine resulted in formation of the assembled FeSe 2 nanorods, which were characterized by scanning electron microscopy, transmission

Materials ChemistryMaterials Science

Research Areas

Materials ChemistryCondensed Matter PhysicsElectronic, Optical and Magnetic MaterialsAtomic and Molecular Physics, and OpticsElectrical and Electronic EngineeringRenewable Energy, Sustainability and the Environment

Jegun Parkの研究をNubintでさらに深く

この研究室の論文をアプリで開き、AIと共に読み、要約し、引用しましょう。