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Young-chul Ghim

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

研究室紹介

Professor Young-chul Ghim's research lab specializes in experimental fusion energy science, focusing on turbulent plasma dynamics and diagnostics in magnetic confinement fusion devices such as the Mega Amp Spherical Tokamak (MAST). The lab develops advanced diagnostic techniques—particularly beam emission spectroscopy (BES) and Bayesian inference methods—to measure and model ion and electron temperature and density profiles, turbulence correlation, and transport phenomena. Key research directions include understanding critical balance in turbulence, the role of magnetic shear and equilibrium parameters in regulating turbulent transport, and the development of high-resolution imaging diagnostics for improved spatial and temporal resolution. The lab integrates experimental data with sophisticated forward modeling and statistical inference (e.g., Markov chain Monte Carlo) to extract reliable plasma profiles and turbulence characteristics.

fusion energyplasma turbulencebeam emission spectroscopyBayesian inferencetokamak diagnostics

Research Overview

Papers
158
Total Citations
744
Papers (5y)
38
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)
38total
2022
2023
2024
2025
2026
Citations per year (5y)
150total
20222023202420252026

Selected Papers

15
1
Article|36 citations·2013
Experimental Signatures of Critically Balanced Turbulence in MAST
Young-chul Ghim, A. A. Schekochihin, A. R. Field, Ian Abel, M. Barnes, Greg Colyer, S. C. Cowley, F. I. Parra, D. Dunai, S. Zoletnik
SJR Q1Physical Review LettersOA

Beam emission spectroscopy (BES) measurements of ion-scale density fluctuations in the MAST tokamak are used to show that the turbulence correlation time, the drift time associated with ion temperature or density gradients, the particle (ion) streaming time along the magnetic field, and the magnetic drift time are consistently comparable, suggesting a "critically balanced" turbulence determined by the local equilibrium. The resulting scalings of the poloidal and radial correlation lengths are de

Nuclear and High Energy PhysicsPhysics and Astronomy
2
Article|30 citations·2020
Bayesian modelling of Thomson scattering and multichannel interferometer diagnostics using Gaussian processes
S. Kwak, J. Svensson, S. Bozhenkov, J. Flanagan, M. Kempenaars, A. Boboc, Young-chul Ghim, JET Contributors
SJR Q1Nuclear FusionOA

Electron temperature and density profiles consistent with JET high resolution Thomson scattering (HRTS) and far infrared (FIR) interferometer data are inferred by a Bayesian joint model using Gaussian processes. Forward models predicting diagnostic data including instrument effects such as optics and electronics are developed independently for both diagnostic systems in the Minerva framework, and combined as one joint model. The full joint posterior distribution of the electron temperature and d

Nuclear and High Energy PhysicsPhysics and Astronomy
3
Article|26 citations·2012
Measurement and physical interpretation of the mean motion of turbulent density patterns detected by the beam emission spectroscopy system on the mega amp spherical tokamak
Young-chul Ghim, A. R. Field, D. Dunai, S. Zoletnik, L. Bardóczi, A. A. Schekochihin, the MAST Team
SJR Q1Plasma Physics and Controlled FusionOA

The mean motion of turbulent patterns detected by a two-dimensional (2D) beam emission spectroscopy (BES) diagnostic on the Mega Amp Spherical Tokamak (MAST) is determined using a cross-correlation time delay (CCTD) method. Statistical reliability of the method is studied by means of synthetic data analysis. The experimental measurements on MAST indicate that the apparent mean poloidal motion of the turbulent density patterns in the lab frame arises because the longest correlation direction of t

Nuclear and High Energy PhysicsPhysics and Astronomy
4
Article|24 citations·2023
GS-DeepNet: mastering tokamak plasma equilibria with deep neural networks and the Grad–Shafranov equation
Semin Joung, Young-chul Ghim, Jaewook Kim, S. Kwak, Daeho Kwon, Chih‐Jen Sung, Dong Ju Kim, Hyun-Seok Kim, J.G. Bak, S.W. Yoon
SJR Q1Scientific ReportsOA

The force-balanced state of magnetically confined plasmas heated up to 100 million degrees Celsius must be sustained long enough to achieve a burning-plasma state, such as in the case of ITER, a fusion reactor that promises a net energy gain. This force balance between the Lorentz force and the pressure gradient force, known as a plasma equilibrium, can be theoretically portrayed together with Maxwell's equations as plasmas are collections of charged particles. Nevertheless, identifying the plas

Nuclear and High Energy PhysicsPhysics and Astronomy
5
Article|20 citations·2010
Calculation of spatial response of 2D beam emission spectroscopy diagnostic on MAST
Young-chul Ghim, A. R. Field, S. Zoletnik, D. Dunai
SJR Q2Review of Scientific Instruments

The beam emission spectroscopy (BES) turbulence diagnostic on MAST is to be upgraded in June 2010 from a one-dimensional trial system to a two-dimensional imaging system (8 radial×4 poloidal channels) based on a newly developed avalanche photodiode array camera. The spatial resolution of the new system is calculated in terms of the point spread function to account for the effects of field-line curvature, observation geometry, the finite lifetime of the excited state of the beam atoms, and beam a

Nuclear and High Energy PhysicsPhysics and Astronomy
6
Article|15 citations·2009
Improved double planar probe data analysis technique
Young-chul Ghim, N. Hershkowitz
SJR Q2Review of Scientific Instruments

Plasma electron number density and ion number density in a dc multidipole weakly collisional Ar plasma are measured with a single planar Langmuir probe and a double planar probe, respectively. A factor of two discrepancy between the two density measurements is resolved by applying Sheridan's empirical formula [T. E. Sheridan, Phys. Plasmas 7, 3084 (2000)] for sheath expansion to the double probe data.

Electrical and Electronic EngineeringEngineering
7
Article|12 citations·2022
Observation of MHD-correlated blobs during internal reconnection events in VEST
E. Jung, Y.S. Na, S. Kim, Won Ik Jeong, Jong-Kyu Park, T.S. Hahm, Young-chul Ghim, Y. S. Hwang
SJR Q1Nuclear Fusion

Abstract Internal reconnection events (IREs), one of the relaxation events driven by internal magnetohydrodynamic (MHD) instabilities in fusion plasmas, are accompanied by a strongly MHD-correlated blob at the edge in the Versatile Experiment Spherical Torus spherical tokamak. The MHD-correlated blob plays a significant role in the onset and the strength of IREs. Various techniques analyzing visible camera images show correlated waveforms between blobs and magnetic fluctuations, and they produce

Nuclear and High Energy PhysicsPhysics and Astronomy
8
Article|11 citations·2014
Local dependence of ion temperature gradient on magnetic configuration, rotational shear and turbulent heat flux in MAST
Young-chul Ghim, A. R. Field, A. A. Schekochihin, Edmund Highcock, C. Michael, the MAST Team
SJR Q1Nuclear Fusion

Experimental data from the Mega Amp Spherical Tokamak (MAST) is used to show that the inverse gradient scale length of the ion temperature has its strongest local correlation with the rotational shear and the pitch angle of the magnetic field. Furthermore, is found to be inversely correlated with the gyro-Bohm-normalized local turbulent heat flux estimated from the density fluctuation level measured using a 2D beam emission spectroscopy diagnostic. These results can be explained in terms of the

Nuclear and High Energy PhysicsPhysics and Astronomy
9
Article|10 citations·2020
New low temperature multidipole plasma device with a magnetic X-point and its properties
Yegeon Lim, Yong Sung You, Wonjun Lee, B. H. Ahn, Se Youn Moon, Bosung Kim, H.‐J. Woo, Taihyeop Lho, Wonho Choe, Young-chul Ghim
SJR Q2Plasma Sources Science and Technology

Abstract A new low temperature multidipole plasma device with a magnetic X-point is developed. With a usual multidipole configuration generated by permanent neodymium magnets, a pair of axially flowing electrical currents up to 1.0 kA in the chamber creates figure-eight shaped poloidal magnetic fields with the X-point which separates plasmas into three distinct regions of core, edge and private regions. This new device, ma gnetic X -point s imu lator s ystem (MAXIMUS), is equipped with end-plate

Nuclear and High Energy PhysicsPhysics and Astronomy
10
Article|9 citations·2021
The new single crystal dispersion interferometer installed on KSTAR and its first measurement
Dong‐Geun Lee, K. C. Lee, J.-W. Juhn, Jaeseok Lee, Young-chul Ghim
SJR Q2Review of Scientific Instruments

Dispersion interferometers have been used to measure line integrated electron densities from many fusion devices. To optically suppress noise due to mechanical vibrations, a conventional dispersion interferometer typically uses two nonlinear crystals located before and after the plasma along the laser beam path. Due to the long beam path, it can be difficult to overlap the fundamental and second harmonic laser beams for a heterodyne dispersion interferometer and to focus the beams on the second

Nuclear and High Energy PhysicsPhysics and Astronomy
11
Article|8 citations·2020
Nonlinear energy transfer from low frequency electromagnetic fluctuations to broadband turbulence during edge localized mode crashes
Jaewook Kim, M. Choi, Y.U. Nam, Hogun Jhang, J. G. Bak, S.H. Hahn, C. Sung, Wonho Choe, Young-chul Ghim
SJR Q1Nuclear Fusion

Nonlinear energy transfer from low frequency electromagnetic fluctuations to broadband turbulence during edge localized mode crashes, Kim, Jaewook, Choi, M.J., Nam, Y.U., Jhang, Hogun, Bak, J.G., Hahn, S.H., Sung, C., Choe, W., Ghim, Y.-c.

Nuclear and High Energy PhysicsPhysics and Astronomy
12
Article|8 citations·2022
Benchmark experiments of the power law parametrization of the effective ion collecting area of a planar Langmuir probe in low temperature plasmas
Yegeon Lim, Greg Severn, Chi-Shung Yip, Young-chul Ghim
SJR Q2Plasma Sources Science and Technology

Abstract For unmagnetized low temperature Ar plasmas with plasma density ranging from 3 × 10 8 to 10 10 cm −3 and an electron temperature of ∼1 eV, the expansion of the ion collecting area of a double-sided planar Langmuir probe with respect to probe bias is experimentally investigated, through a systematic scan of plasma parameters. In accordance with many existing numerical studies, the ion collecting area is found to follow a power law for a sufficiently negative probe bias. Within our experi

Electrical and Electronic EngineeringEngineering
13
Article|6 citations·2024
Kinetic profile inference with outlier detection using support vector machine regression and Gaussian process regression
Minseok Kim, W.H. Ko, S. Kwak, Semin Joung, Wonjun Lee, B. Kim, Dong Ju Kim, J.H. Lee, C. Sung, Yong-Su Na, Young-chul Ghim
SJR Q1Nuclear FusionOA

Abstract We propose an outlier-resilient Gaussian process regression (GPR) model supported by support vector machine regression (SVMR) for kinetic profile inference. GPR, being a non-parametric regression using Bayesian statistics, has advantages in that it imposes no constraints on profile shapes and can be readily used to integrate different kinds of diagnostics, while it is vulnerable to the presence of even a single outlier among a measured dataset. As an outlier classifier, an optimized SVM

Nuclear and High Energy PhysicsPhysics and Astronomy
14
Article|6 citations·2016
Conditions for generating synthetic data to investigate characteristics of fluctuating quantities
Jaewook Kim, Michael F. J. Fox, A R Field, Y.U. Nam, Young-chul Ghim
SJR Q1Computer Physics CommunicationsOA
Nuclear and High Energy PhysicsPhysics and Astronomy
15
Article|3 citations·2024
Development of a fixed Langmuir probe system for newly installed tungsten monoblock lower divertors in KSTAR
Yegeon Lim, Seungmin Bong, Eunnam Bang, Hyungho Lee, Young-chul Ghim
SJR Q1Fusion Engineering and Design
Nuclear and High Energy PhysicsPhysics and Astronomy

Research Areas

Nuclear and High Energy PhysicsElectrical and Electronic EngineeringAerospace EngineeringAtomic and Molecular Physics, and OpticsMechanics of MaterialsAstronomy and Astrophysics

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