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Dong Eon Kim

Pohang University of Science and Technology · 工学

研究室紹介

Professor Dong Eon Kim's research lab specializes in advanced accelerator physics and plasma-based radiation sources, with a focus on free-electron lasers (XFELs), undulator design, and high-intensity laser-plasma interactions. The lab develops cutting-edge insertion devices and beam dynamics systems for next-generation X-ray facilities, such as PAL-XFEL, emphasizing low-emittance electron injectors and variable-gap undulators. It also investigates laser-driven wakefield acceleration and ultra-short pulse laser applications in microelectronics manufacturing, particularly for precision material processing and defect repair. The lab combines experimental development, numerical simulation, and advanced magnetic measurement techniques to advance photon science and accelerator technology.

free-electron lasersundulator designlaser-plasma interactionsbeam dynamicsX-ray sources

Research Overview

Papers
19
Total Citations
123
Papers (5y)
5
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
5total
2015
2016
2017
2018
2025
Citations per year (5y)
24total
20152016201720182025

Selected Papers

15
1
Article|54 citations·2001
Demagnetization of undulator magnets irradiated high energy electrons
Teruhiko Bizen, T. Tanaka, Yoshihiro Asano, D.E. Kim, J.S. Bak, H.S. Lee, Hideo Kitamura
SJR Q2Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment
Electrical and Electronic EngineeringEngineering
2
Article|14 citations·2005
Field mapping system for cyclotron magnet
Ki Hun Park, Y. G. Jung, D.E. Kim, Byunghoon Kang, M. Yoon, Jong‐Seo Chai, Y.S. Kim
SJR Q2Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment
Nuclear and High Energy PhysicsPhysics and Astronomy
3
Article|11 citations·2015
A study on low emittance injector and undulator for PAL-XFEL
Juho Hong, Jang-Hui Han, S.J. Park, Y. G. Jung, D.E. Kim, Heung-Sik Kang, J. Pflueger
SJR Q1High Power Laser Science and EngineeringOA

For the success of PAL-XFEL, two critical systems, namely a low emittance injector and a variable gap out-vacuum undulator, are under development. In order to realize the target emittance of the PAL-XFEL injector we carried out an optimization study of various parameters, such as the laser beam transverse profile, the laser pulse length, the laser phase, and the gun energy. The transverse emittance measured at the Injector Test Facility (ITF) is ${\it\varepsilon}_{x}=0.48\pm 0.01~\text{mm}~\text

Electrical and Electronic EngineeringEngineering
4
Article|6 citations·2009
High-resolution voltage reference for magnet power supply
Ki Hun Park, Seong‐Hoon Jeong, D.E. Kim, Bongkoo Kang
SJR Q2Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment
Electrical and Electronic EngineeringEngineering
5
Article|6 citations·2016
Development of high-stability magnet power supply
Won Seok Choi, Minjae Kim, Ilsu Jeong, D.E. Kim, H.C. Park, Ki Hun Park
SJR Q2Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment
Electrical and Electronic EngineeringEngineering
6
Article|5 citations·2017
Development of PAL-XFEL Undulator System
김동언, 정영규, 이월우, 박기현, 이상봉, 오봉기, 정성훈, 이홍기, 서형석, 강흥식, 고인수, Joachim Pflueger

Pohang Accelerator Laboratory (PAL) have developed a 0.1 nm SASE based FEL based on 10 GeV S-band linear accelerator named PAL-XFEL. At the first stage, PAL-XFEL needs two undulator lines for photon source. The hard X-ray undulator line requires 20 units of 5 m long hybrid-type conventional planar undulator and soft X-ray line requires 7 units of 5 m long hybrid type planar undulators. PAL have developed undulator magnetic structure based on EU-XFEL concepts. In this report, the impact of the ba

7
Article|5 citations·2006
Radiation damage in permanent magnets for ID
Teruhiko Bizen, X.-M. Maréchal, T. Seike, Hideo Kitamura, Toru Hara, T. Tanaka, Y. Asano, D.E. Kim, H.S. Lee
SJR Q2Radiation Measurements
Electronic, Optical and Magnetic MaterialsMaterials Science
8
Article|3 citations·2012
Designs and measurements of gradient dipole magnets for the upgrade of Pohang Light Source
Y. Chen, D.E. Kim, Wen Kang, Fusan Chen, Mei Yang, Zhuo Zhang, Baogui Yin, Jianxin Zhou
SJR Q2Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment
Electrical and Electronic EngineeringEngineering
9
Article|3 citations·2006
Magnetic Block Measurement for Insertion Devices in the PAL
박기현, 강봉구, 정진화, 김동언, 이홍기, 한홍식, 서형석, 이월우, 정영규

Insertion devices (IDs) for the Pohang Light Source (PLS) have been developed and installed into the storage ring to produce higher photon energies. The IDs were fabricated using many Nd-Fe-B permanent magnetic blocks as the source of the magnetic field. The magnetic field characteristics of the IDs heavily depend on the directional uniformity of the magnetization of block sets. This paper describes the Helmholtz coil system (HCS) for measuring the magnetic moments of the blocks, the sorting pro

10
Article|3 citations·2002
Shock Model for the Reversed Current Flow in a Z-pinch Plasma
Ki-TaeLee, 김동언, Seong-HoKim

A reversed current flow in a Z-pinch plasma, which has been observed in previous experiments, is reproduced in a one-dimensional magnetohydrodynamics simulation. The detailed investigation reveals that the formation of the reversed current flow is caused by the propagation of a shock wave. According to the results of the numerical simulation, a new theoretical model, a shock model, is proposed to account for such a phenomenon. The new model shows that a reversed current flow appears when a shock

11
Article|3 citations·2010
X-ray Radiation Emitted from the Betatron Oscillation of Electrons in Laser Wakefields
Seok Won Hwang, 이해준, Sang Young Chung, 김동언

An ultra-intense short laser pulse incident on a plasma generates a blowout-regime wakefield,where almost all of the electrons are expelled radially by the ponderomotive force. Electrons injected in an off-axis position of the blowout-regime wakefield experience transverse oscillations as well as longitudinal acceleration, and emit intense X-rays from betatron oscillations. In order to investigate the conditions for X-ray generation, we simulated the relativistic electron motion from wakefield p

12
Article|3 citations·2010
레이저를 이용한 폴리머 탄화현상 해석 및 LCD 제조공정에서의 응용
안대환, 박병구, 김동언, 김동식

Laser carbonization of a polymer layer can be employed in various applications in the microelectronics industry, e.g., repairing brightness pixels of an LCD panel. In this work, the process of thermal degradation of LCD color filter polymer by various laser sources with pulsewidths from CW to fs is studied. LCD pixels are irradiated by the lasers and the threshold irradiance of LCD color filter polymer carbonization is experimentally measured. In the numerical analysis, the transient temperature

13
Article|2 citations·2001
Conceptual design of a 14 cm period multipole wiggler at PLS
D.E. Kim, Hyeon-Seok Lee, Hyung Suh, Y. G. Jung, Ki Hun Park, J.S. Bak
SJR Q2Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment
Electrical and Electronic EngineeringEngineering
14
Article|2 citations·2010
Status of the PLS-II Magnet Design and Fabrication
김동언, K. H. Park, H. G. Lee, Y. G. Jung, H. S. Suh, Y. D. Joo, K. R. Kim

The only 3rd generation synchrotron light source in Korea, which is operated by the Pohang Accelerator Laboratory (PAL), is planning a major upgrade of the PLS to meet the more demanding requirements of the synchrotron light users. The main features of the major upgrade are (1)increasing the electron beam energy from 2.5 GeV to 3.0 GeV for higher energy X-ray photons, (2)decreasing the electron beam emittance from 18.9 nm to 5.8 nm to increase the photon brilliance,and (3) increasing the number

15
Article|1 citations·2018
Extreme Metrology for Ultrafast Electron Dynamics at the Atomic Scale
김동언

The past two decades have witnessed the remarkable advance in the new metrology for ultrafast electron dynamics, which allows one to control material processes at electron level and study dynamics far away from equilibrium. This excitement is presented with a brief history of the development and exemplary experiments performed with the new metrology. Applications reviewed include atomic and molecular, condensed-phase science, and advances in X-ray Free electron lasers (XFELs), with an emphasis o

Research Areas

Electrical and Electronic EngineeringBiomedical EngineeringNuclear and High Energy PhysicsElectronic, Optical and Magnetic Materials

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