Present status of the electron beam diagnostics system of the PLS-II linac

The PLS-II, the upgraded PLS (Pohang Light Source), has been providing users with photon beams in the top-up mode since March 2013. The requirements for the PLS-II linac to achieve the top-up injection are very demanding because it is a full energy injector with a very limited energy margin. One of...

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Published inJournal of the Korean Physical Society Vol. 66; no. 3; pp. 419 - 424
Main Authors Choi, Jae-Young, Kim, Changbum, Kim, Mungyung, Kim, Dotae, Kim, Jae Myung, Lee, Eunhee, Kim, Ghyung Hwa, Shin, Seunghwan, Huang, Jung Yun
Format Journal Article
LanguageEnglish
Published Seoul The Korean Physical Society 01.02.2015
한국물리학회
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ISSN0374-4884
1976-8524
DOI10.3938/jkps.66.419

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Abstract The PLS-II, the upgraded PLS (Pohang Light Source), has been providing users with photon beams in the top-up mode since March 2013. The requirements for the PLS-II linac to achieve the top-up injection are very demanding because it is a full energy injector with a very limited energy margin. One of the requirements is to ensure high injection efficiency in order to minimize the beam loss at the storage ring injection point and the experimental hall during injection because loss leads to a high radiation level in the experimental hall. The energy stability and energy spread of the accelerated electron beam are fundamental parameters to monitor and manage for high injection efficiency. An energy feedback system consisting of a stripline-type beam position monitor and the last klystron was implemented. To diagnose the injected beam’s energy and energy spread in real time during top-up mode injection, we installed an optical transition radiation (OTR) monitor system upstream of the beam transport line (BTL) after the first bending magnet. The energy and the energy spread ranges can be controlled with a horizontal slit installed after the OTR monitor. The vertical beam size of the accelerated beam must be decreased for efficient injection because the electron beam is injected into the storage ring with many in-vacuum undulators of small gaps. For this purpose, two vertical slits were installed in the BTL region. We will describe mainly those instruments closely related to top-up operation, though other beam diagnostic instruments have been used since PLS.
AbstractList The PLS-II, the upgraded PLS (Pohang Light Source), has been providing users with photonbeams in the top-up mode since March 2013. The requirements for the PLS-II linac to achieve thetop-up injection are very demanding because it is a full energy injector with a very limited energymargin. One of the requirements is to ensure high injection efficiency in order to minimize the beamloss at the storage ring injection point and the experimental hall during injection because loss leadsto a high radiation level in the experimental hall. The energy stability and energy spread of theaccelerated electron beam are fundamental parameters to monitor and manage for high injectionefficiency. An energy feedback system consisting of a stripline-type beam position monitor andthe last klystron was implemented. To diagnose the injected beam’s energy and energy spread inreal time during top-up mode injection, we installed an optical transition radiation (OTR) monitorsystem upstream of the beam transport line (BTL) after the first bending magnet. The energy andthe energy spread ranges can be controlled with a horizontal slit installed after the OTR monitor. The vertical beam size of the accelerated beam must be decreased for efficient injection becausethe electron beam is injected into the storage ring with many in-vacuum undulators of small gaps. For this purpose, two vertical slits were installed in the BTL region. We will describe mainly thoseinstruments closely related to top-up operation, though other beam diagnostic instruments havebeen used since PLS. KCI Citation Count: 1
The PLS-II, the upgraded PLS (Pohang Light Source), has been providing users with photon beams in the top-up mode since March 2013. The requirements for the PLS-II linac to achieve the top-up injection are very demanding because it is a full energy injector with a very limited energy margin. One of the requirements is to ensure high injection efficiency in order to minimize the beam loss at the storage ring injection point and the experimental hall during injection because loss leads to a high radiation level in the experimental hall. The energy stability and energy spread of the accelerated electron beam are fundamental parameters to monitor and manage for high injection efficiency. An energy feedback system consisting of a stripline-type beam position monitor and the last klystron was implemented. To diagnose the injected beam’s energy and energy spread in real time during top-up mode injection, we installed an optical transition radiation (OTR) monitor system upstream of the beam transport line (BTL) after the first bending magnet. The energy and the energy spread ranges can be controlled with a horizontal slit installed after the OTR monitor. The vertical beam size of the accelerated beam must be decreased for efficient injection because the electron beam is injected into the storage ring with many in-vacuum undulators of small gaps. For this purpose, two vertical slits were installed in the BTL region. We will describe mainly those instruments closely related to top-up operation, though other beam diagnostic instruments have been used since PLS.
Author Kim, Changbum
Kim, Ghyung Hwa
Choi, Jae-Young
Kim, Mungyung
Shin, Seunghwan
Kim, Jae Myung
Lee, Eunhee
Huang, Jung Yun
Kim, Dotae
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Keywords Linear accelerator
Top-up injection
Electron beam diagnostics
PLS-II
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ShinSProceedings of IPAC201220121089
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KimS HProceedings of IPAC201220123683
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S J Park (419_CR3) 2010
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S Shin (419_CR1) 2012
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– reference: ShinSProceedings of IPAC201220121089
– reference: T. Shaftan (private communication, 2010).
– reference: I. Hwang et al., Top-up operation at the PLS-II, Rev. Sci. Instr., in press.
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Snippet The PLS-II, the upgraded PLS (Pohang Light Source), has been providing users with photon beams in the top-up mode since March 2013. The requirements for the...
The PLS-II, the upgraded PLS (Pohang Light Source), has been providing users with photonbeams in the top-up mode since March 2013. The requirements for the...
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SubjectTerms Mathematical and Computational Physics
Particle and Nuclear Physics
Physics
Physics and Astronomy
Theoretical
물리학
Title Present status of the electron beam diagnostics system of the PLS-II linac
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