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Featured researches published by In Soo Ko.


Archive | 2011

Quantification of Laser Polarization by Position Dependent Refractive Indices

Yong Woon Parc; In Soo Ko

The electro-optic (EO) crystals used in the generation of tera-hertz radiation [Shan et al, 2000; Wen & Lindenberg, 2009; Shen et al., 2008] can be applied to non-invasive measurements of the electron bunch in the accelerator. The bunch length and arrival time of the electron bunch with respect to the laser can be measured with this technique. The electric field generated by the electron bunch changes the optical properties of the EO crystal. The laser passing through the EO crystal will thus experience a modulation in the polarization state. The amount of optical power modulation, which can be detected by detectors such as photodiodes and cameras, can be calculated by Jones matrices [Jones, 1941; Hecht, 2002]. In recent years, the EO technique has been implemented to measure femtosecond electron bunches with high energy at several facilities such as the free-electron laser for infrared experiments (FELIX), the sub-picosecond pulse source (SPPS), and the free-electron laser in Hamburg (FLASH) [Yan et al, 2000; Wilke et al., 2002; Berden et al., 2004; Cavalieri et al., 2005; Casalbuoni et al., 2008; Steffen et al., 2009]. In these applications, the electric field from the electron bunch makes a finite angle with the crystallographic axis, because the electric field is generated radially from the electron bunch. In a real diagnostics setup, the principal axes at the passing position of the laser in the EO crystal are no longer 45o with respect to the crystallographic axes. However, the polarization vector of the laser is usually fixed as parallel to an crystallographic axis of the EO crystal in the measurement. When an electric field is applied to the EO crystal, it shows a birefringence which is described by an ellipsoid equation of refractive indices. If the ellipsoid equation can be expressed without any cross term between the three axes in a coordinate system, they are called the principal axes. If a linearly polarized laser is passing through the EO crystal with an external electric field applied to it, the polarization of the laser is modulated elliptically or even circularly. Conventional theories to describe the measurement result of an electron bunch with EO crystal have only used the principal axes and the principal refractive indices. To quantify the polarization state, we need to define amplitudes and phases of the electric field components of the laser. If the amplitudes of the decomposed electric field are the same, we need the phase information only to quantify the polarization state. To decompose the electric field with the same amplitude, we need to choose decomposition axes at 45o with respect to the polarization vector. The spatial


Presented at | 2010

Upgraded Photocathode RF Gun at PAL

Juho Hong; Sung-Ju Park; Changbum Kim; Yong Woon Parc; In Soo Ko; Sugn-ik Moon; MoonSik Chae


7th International Particle Accelerator Conference (IPAC'16), Busan, Korea, May 8-13, 2016 | 2016

RF Timing Distribution and Laser Synchronization Commissioning of PAL-XFEL

Chang-Ki Min; Seong Hoon Jung; Heung-Sik Kang; Changbum Kim; In Soo Ko; Sung-Ju Park


7th Int. Particle Accelerator Conf. (IPAC'16), Busan, Korea, May 8-13, 2016 | 2016

Technical Overview of the PAL-XFEL Conventional Facility

Iksu Mok; Myung Seob Hwang; Tai-Hee Kang; Kwang-Woo Kim; Kyung Suk Kim; Seung Hwan Kim; Seung Nam Kim; Young Chan Kim; Young-Chul Kim; In Soo Ko; Bongho Lee; Hwa Lee; Jong Houn Lee; Mong Lee; Byung Im Moon; Kwang Won Seo; Chang Son; ChiWon Sung; Jungmu Yang; Sang Wan Yong


5th Int. Particle Accelerator Conf. (IPAC'14), Dresden, Germany, June 15-20, 2014 | 2014

LINAC LATTICE OPTIMIZATION FOR PAL-XFEL HARD X-RAY FEL LINE *

Haeryong Yang; Jang Hui Han; Heung-Sik Kang; In Soo Ko


Archive | 2013

CONSTRUCTION OF INJECTOR TEST FACILITY (ITF) FOR THE PAL XFEL

Sung-Ju Park; Yoon-Gyu Son; MoonSik Chae; Yong Jung Park; Heung-Sik Kang; Tai-Hee Kang; Bongho Lee; Woon Ha Hwang; Jang Hui Han; Woul Woo Lee; Juho Hong; Heung-Soo Lee; Jae Myung Kim; In Soo Ko; Chang-Ki Min; Do Tae Kim; Taekyun Ha; Sung-Chul Kim; Hyojin Choi


Archive | 2009

APPARATUS AND METHOD FOR GENERATING FEMTOSECOND ELECTRON BEAM

Yong Woon Park; Hyotcherl Ihee; Chang Bum Kim; In Soo Ko


Archive | 2017

Diagnostic Systems for the PAL-XFEL Commissioning

Changbum Kim; Haeryong Yang; Soung Youl Baek; Heung-Sik Kang; YoungJin Suh; Juho Hong; Gyujin Kim; Geonyeong Mun; In Soo Ko; JiHwa Kim; Byoung Ryul Park; Bong-Gi Oh; DongCheol Shin; Hyojin Choi; Sojeong Lee


7th International Particle Accelerator Conference (IPAC'16), Busan, Korea, May 8-13, 2016 | 2016

The Fast Interlock Controller for High Power Pulse Modulator at PAL-XFEL

Sang-Hee Kim; Heung-Sik Kang; KwangHoon Kim; In Soo Ko; Sei-Jin Kwon; Heung-Soo Lee; Soung Park; Yong Jung Park


7th International Particle Accelerator Conference (IPAC'16), Busan, Korea, May 8-13, 2016 | 2016

PAL-XFEL Dipole Magnet Power Supplies

Seong-Hun Jeong; Y. G. Jung; Heung-Sik Kang; Dong Eon Kim; In Soo Ko; Hong-Gi Lee; Sangbong Lee; Dong Hyun Na; Bong-Gi Oh; Ki-Hyeon Park; Hyung Suh

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Heung-Sik Kang

Pohang University of Science and Technology

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Changbum Kim

Pohang University of Science and Technology

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Bong-Gi Oh

Pohang University of Science and Technology

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Sung-Ju Park

Pohang University of Science and Technology

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Dong Eon Kim

Pohang University of Science and Technology

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Hong-Gi Lee

Hyundai Heavy Industries

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Juho Hong

Pohang University of Science and Technology

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Ki-Hyeon Park

Pohang University of Science and Technology

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Sangbong Lee

Pohang University of Science and Technology

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Y. G. Jung

Pohang University of Science and Technology

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