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Geon Soo Yoon

Pohang University of Science and Technology · 物理学・天文学

研究室紹介

Professor Geon Soo Yoon's research lab specializes in plasma diagnostics and wave-plasma interactions in magnetic fusion energy research, with a focus on electron cyclotron emission (ECE) imaging, microwave imaging reflectometry (MIR), and the study of micro-instabilities such as tearing modes and quasi-coherent modes in tokamak plasmas. The lab develops advanced diagnostic systems, including modular antenna/detector arrays and signal analysis techniques, to enable real-time monitoring and control of plasma instabilities in devices like the KSTAR tokamak. Their work bridges experimental observations with kinetic simulations, particularly in understanding nonlinear effects in Landau damping and edge localized mode (ELM) dynamics.

plasma diagnosticselectron cyclotron emissionmicrowave imaging reflectometrymicro-instabilitiesfusion energy

Research Overview

Papers
7
Total Citations
15
Papers (5y)
5
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)
5total
2014
2015
2017
2018
2022
Citations per year (5y)
15total
20142015201720182022

Selected Papers

7
1
Article|6 citations·2015
Experiment and simulation of tearing mode evolution with electron cyclotron current drive in KSTAR
김경진, 나용수, 김민화, Y.M. Jeon, K.D. Lee, J.G. Bak, M.J. Choi, 윤건수, S.G. Lee, S. Park, J. H. Jeong, L. Terzolo

The tearing mode (TM) plasma instability was observed in low confinement (L-mode) plasmas when non-axisymmetric magnetic perturbation (MP) was applied using external coils during 2011 campaign of KSTAR. Based on the collected information of the magnetic island location in a plasma, a discharge was designed for suppression of a (2,1) TM mode by adjusting electron cyclotron (EC) launcher angles to the estimated island position. Here, the (m,n) notation describes the poloidal mode number and the to

2
Article|6 citations·2022
W-Band Modular Antenna/Detector Array for the Electron Cyclotron Emission Imaging System in KSTAR
Gwan Hui Lee, Jung‐Seok Lee, Dong Hwi Kim, Syifa Haunan Nashuha, Mun Ju Kim, Byung-Cheol Min, Jae Hyun Lee, Woo Chang Lee, Gun Su Yun, Tae Gyu Kim, Bong Tae Kim, Hyun Chul Choi
SJR Q2Applied SciencesOA

A design of a modular antenna/detector array for the electron cyclotron emission (ECE) imaging system at the Korea Superconducting Tokamak Advanced Research (KSTAR) is proposed. The modular antenna/detector array is based on a unit antenna/detector module, which consists of an elliptical mini-lens, a dual-dipole antenna, an antenna balun, a low-noise amplifier, and a metal frame. The proposed modular antenna/detector array resolves the problem in the conventional antenna/detector array where one

Nuclear and High Energy PhysicsPhysics and Astronomy
3
Article|1 citations·2014
Finite Amplitude Effects on Landau Damping and Diminished Transportation of Trapped Electrons
Chang Woo Myung, I. H. Won, Ho‐Young Kim, Jeong‐Soo Lee, Gun Su Yun, Jae Koo Lee
SJR Q2Journal of the Physical Society of Japan

We studied the effect of finite amplitude, which was ignored in Landau's linearized theory and also studied a transition criterion between linear and nonlinear Landau damping. To adjust the finite amplitude of wave and the initial trapped electron flux J(xT0), we used particle-in-cell simulation that can uniquely modulate these parameters. We predicted on the finite amplitude of wave potential and kinetic energies; these matched the simulation exactly. Oscillation and damping rates in L

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
4
Article|1 citations·2017
Interpretation of the Electron Cyclotron Emission Signal from Optically Marginal Plasmas
Muhammad Khawar Ayub, 윤건수, 이우창, Hyeon K. Park

The interpretation of electron cyclotron emission (ECE) signal from the optically marginal region of magnetized plasma is presented. The density and the temperature fluctuations associated with the edge localized modes (ELMs) observed in the KSTAR tokamak are estimated by assuming an ELM filamentary structure as a flux tube bulges out like a ballooning mode instability. Synthetic ECE signals from the rotating ELM are calculated based on the measured electron temperature profile and an assumed el

5
Article|1 citations·2018
Dependence of Spatial Scale of Quasi-Coherent Mode on Collisionality in Electron Cyclotron Resonant Heating Assisted Low-Confinement Plasmas
이지훈, 임준억, 윤건수, 박현거, 이우창

Quasi-coherent mode (QCM) is a widely studied ion-gyroscale micro-instability with characteristics similar to those of trapped electron mode in tokamak plasmas. The effect of the normalized collisionality on the QCM amplitude is quantitatively studied in low-confinement plasmas assisted by electron cyclotron resonant heating in the KSTAR machine using the microwave imaging reflectometer (MIR). To study the evolution of the QCM amplitude by the increased collisionality, coherence lengths are obta

6
Article|0 citations·2005
Detailed Observations of Magnetic Flux Tube Collimation
Setthivoine You, Gun Su Yun, Paul M. Bellan
Bulletin of the American Physical Society
Nuclear and High Energy PhysicsPhysics and Astronomy
7
Article|0 citations·2011
High Confinement Mode in the KSTAR Device and Control of Accompanying Edge Localized Mode
Jay Hyun Kim, Y.M. Jeon, W. W. Xiao, Si Woo Yoon, Y. S. Bae, Won Ha Ko, S. G. Lee, Joon Wook Ahn, Gun Su Yun
Electrical and Electronic EngineeringEngineering

Research Areas

Nuclear and High Energy PhysicsAtomic and Molecular Physics, and OpticsElectrical and Electronic Engineering

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