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Jae‐yoon Choi

Korea Advanced Institute of Science and Technology · 物理学・天文学

研究室紹介

Professor Jae-yoon Choi's research lab specializes in ultracold quantum gases and many-body quantum systems, focusing on topological phenomena, quantum phase transitions, and non-equilibrium dynamics in spinor Bose-Einstein condensates. The lab employs advanced techniques such as single-site-resolved imaging and spin manipulation to explore exotic quantum states, including many-body localization, Skyrmion spin textures, and vortex dynamics in two-dimensional systems. Their work bridges fundamental quantum many-body physics with topological and geometric effects, such as the geometric Hall effect and Berezinskii-Kosterlitz-Thouless physics.

ultracold atomstopological quantum mattermany-body localizationspinor BECquantum dynamics

Research Overview

Papers
62
Total Citations
2,404
Papers (5y)
17
Primary Field
物理学・天文学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
17total
2022
2023
2024
2025
2026
Citations per year (5y)
83total
20222023202420252026

Selected Papers

15
1
Article|989 citations·2016
Exploring the many-body localization transition in two dimensions
Jae-yoon Choi, Sebastian Hild, Johannes Zeiher, Peter Schauß, Antonio Rubio-Abadal, Tarik Yefsah, Vedika Khemani, David A. Huse, Immanuel Bloch, Christian Groß
SJR Q1ScienceOA

A fundamental assumption in statistical physics is that generic closed quantum many-body systems thermalize under their own dynamics. Recently, the emergence of many-body localized systems has questioned this concept and challenged our understanding of the connection between statistical physics and quantum mechanics. Here we report on the observation of a many-body localization transition between thermal and localized phases for bosons in a two-dimensional disordered optical lattice. With our si

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
2
Article|366 citations·2016
Many-body interferometry of a Rydberg-dressed spin lattice
Johannes Zeiher, Rick van Bijnen, Peter Schauß, Sebastian Hild, Jae-yoon Choi, Thomas Pohl, Immanuel Bloch, Christian Groß
SJR Q1Nature PhysicsOA
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
3
Article|182 citations·2012
Observation of Topologically Stable 2D Skyrmions in an Antiferromagnetic Spinor Bose-Einstein Condensate
Jae-yoon Choi, Woo Jin Kwon, Yong-il Shin
SJR Q1Physical Review LettersOA

We present the creation and time evolution of two-dimensional Skyrmion excitations in an antiferromagnetic spinor Bose-Einstein condensate. Using a spin rotation method, the Skyrmion spin textures were imprinted on a sodium condensate in a polar phase, where the two-dimensional Skyrmion is topologically protected. The Skyrmion was observed to be stable on a short time scale of a few tens of ms but to dynamically deform its shape and eventually decay to a uniform spin texture. The deformed spin t

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
4
Article|51 citations·2012
Imprinting Skyrmion spin textures in spinor Bose–Einstein condensates
Jae-yoon Choi, Woo Jin Kwon, Moonjoo Lee, Hyunseok Jeong, Kyungwon An, Yong-il Shin
SJR Q1New Journal of PhysicsOA

We investigate an experimental method for imprinting Skyrmion spin textures in a spinor Bose-Einstein condensate by rapidly moving the zero-field center of a three-dimensional (3D) quadrupole magnetic field through the condensate. Various excitations such as 2D Skyrmions and coreless vortices were created in spin-1 sodium condensates, initially prepared in a uniform polar or ferromagnetic phase. The spin textures were characterized with the spatial distribution of the spin tilt angle, which is f

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
5
Article|48 citations·2013
Observation of Thermally Activated Vortex Pairs in a Quasi-2D Bose Gas
Jae-yoon Choi, Sang Won Seo, Yong-il Shin
SJR Q1Physical Review LettersOA

We measure the in-plane distribution of thermally activated vortices in a trapped quasi-2D Bose gas, where we enhance the visibility of density-depleted vortex cores by radially compressing the sample before releasing the trap. The pairing of vortices is revealed by the two-vortex spatial correlation function obtained from the vortex distribution. The vortex density decreases gradually as temperature is lowered, and below a certain temperature, a vortex-free region emerges in the center of the s

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
6
Article|37 citations·2013
Observation of a Geometric Hall Effect in a Spinor Bose-Einstein Condensate with a Skyrmion Spin Texture
Jae-yoon Choi, Seji Kang, Sang Won Seo, Woo Jin Kwon, Yong-il Shin
SJR Q1Physical Review LettersOA

For a spin-carrying particle moving in a spatially varying magnetic field, effective electromagnetic forces can arise due to the geometric phase associated with adiabatic spin rotation of the particle. We report the observation of a geometric Hall effect in a spinor Bose-Einstein condensate with a Skyrmion spin texture. Under translational oscillations of the spin texture, the condensate resonantly develops a circular motion in a harmonic trap, demonstrating the existence of an effective Lorentz

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
7
Article|33 citations·2012
Probing Phase Fluctuations in a 2D Degenerate Bose Gas by Free Expansion
Jae-yoon Choi, Sang Won Seo, Woo Jin Kwon, Yong-il Shin
SJR Q1Physical Review LettersOA

We measure the power spectrum of the density distribution of a freely expanding two-dimensional (2D) degenerate Bose gas, where irregular density modulations gradually develop due to initial phase fluctuations in the sample. The spectrum has an oscillatory shape, where the peak positions are found to be independent of temperature and show scaling behavior in the course of expansion. The relative intensity of phase fluctuations is estimated from the normalized spectral peak strength and observed

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
8
Article|25 citations·2024
Universality class of a spinor Bose–Einstein condensate far from equilibrium
SeungJung Huh, K. Mukherjee, Kiryang Kwon, Jihoon Seo, Junhyeok Hur, S. I. Mistakidis, H. R. Sadeghpour, Jae-yoon Choi
SJR Q1Nature Physics
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
9
Article|15 citations·2022
Bimetallic PdRh-Fe3O4 nanoparticle-catalyzed highly selective quinoline hydrogenation using ammonia borane
Jae‐yoon Choi, Ahra Cho, Jin Hee Cho, B. Moon Kim
SJR Q2Applied Catalysis A General
Inorganic ChemistryChemistry
10
erratum|8 citations·2015
Corrigendum: Imprinting Skyrmion spin textures in spinor Bose–Einstein condensates (2012 New J. Phys. 14 053013)
Jae-yoon Choi, Woo Jin Kwon, Moonjoo Lee, Hyunseok Jeong, Kyungwon An, Yong-il Shin
SJR Q1New Journal of PhysicsOA
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
11
Article|5 citations·2023
Quantum simulations with ultracold atoms in optical lattices: past, present and future
Jae‐yoon Choi
SJR Q3Journal of the Korean Physical Society
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
12
Article|5 citations·2025
Stable singular fractional skyrmion spin texture from the quantum Kelvin–Helmholtz instability
SeungJung Huh, Wooyoung Yun, Gabin Yun, Samgyu Hwang, Kiryang Kwon, Junhyeok Hur, Seungho Lee, Hiromitsu Takeuchi, Se Kwon Kim, Jae-yoon Choi
SJR Q1Nature Physics
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
13
Article|4 citations·2011
Experimental Apparatus for Producing Large 23Na Bose-Einstein Condensates
Jae‐yoon Choi, Myoung-Sun Heo, Yong-il Shin
SJR Q3Journal of the Korean Physical Society
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
14
letter|3 citations·2013
Choiet al.Reply:
Jae-yoon Choi, Sang Won Seo, Woo Jin Kwon, Yong-il Shin
SJR Q1Physical Review Letters

A Reply to the Comment by T. Langen.Received 11 August 2013DOI:https://doi.org/10.1103/PhysRevLett.111.159602© 2013 American Physical Society

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
15
Article|1 citations·2013
Observation of a Geometric Hall Effect in a Spinor Bose-Einstein Condensate
Jae‐yoon Choi, Seji Kang, Sang Won Seo, Woo Jin Kwon, Yong-il Shin
arXiv (Cornell University)OA

For a spin-carrying particle moving in a spatially varying magnetic field, effective electromagnetic forces can arise due to the geometric phase associated with adiabatic spin rotation of the particle. We report the observation of a geometric Hall effect in a spinor Bose-Einstein condensate with a skyrmion spin texture. Under translational oscillations of the spin texture, the condensate resonantly develops a circular motion in a harmonic trap, demonstrating the existence of an effective Lorentz

Atomic and Molecular Physics, and OpticsPhysics and Astronomy

Research Areas

Atomic and Molecular Physics, and OpticsMolecular BiologyComputer Networks and CommunicationsInorganic ChemistryControl and Systems EngineeringEcology

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