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MOBLA01 |
The Role of Beam Diagnostics in the Rapid Commissioning of the TPS Booster and Storage Ring |
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- P.C. Chiu, J. Chen, Y.-S. Cheng, K.T. Hsu, K.H. Hu, C. H. Huang, C.H. Kuo, D. Lee, C.Y. Liao, C.Y. Wu
NSRRC, Hsinchu, Taiwan
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The TPS is a newly constructed 3-GeV third-generation synchrotron light source featuring ultra-high photon brightness with extremely low emittance. After some hardware improvement especially demagnetization of chamber are completed, the commissioning of the beam in the booster ring began on December 12 and attained 3-GeV energy on December 16. The storage ring obtained its first stored beam and delivered synchrotron light on December 31. This report summarizes the role of beam diagnostic for hardware improvement and parameter tuning during TPS successful commissioning.
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Slides MOBLA01 [17.486 MB]
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MOPB053 |
The Beam Loss Monitoring System in Taiwan Photon Source |
175 |
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- C. H. Huang, J. Chen, Y.-S. Cheng, P.C. Chiu, K.T. Hsu, K.H. Hu, D. Lee, C.Y. Wu
NSRRC, Hsinchu, Taiwan
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Taiwan photon source (TPS) is a 3rd generation and 3 GeV synchrotron light source during beam commissioning in NSRRC. Several types of beam loss monitors (BLMs) such as PIN-photodiodes, scintillation detectors, cherenkov BLMs and RadFETs are installed in the storage ring to study the beam loss distribution and mechanism. The installation infrastructure, design of reader units and integrated graphic user interface will be described in this report. The primary experimental results will also be summary here.
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Poster MOPB053 [0.661 MB]
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TUPB067 |
Synchrotron Radiation Measurement at Taiwan Photon Source |
507 |
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- C.Y. Liao, Y.-S. Cheng, P.C. Chiu, K.T. Hsu, S.Y. Hsu, H.P. Hsueh, K.H. Hu, C.K. Kuan, C.Y. Wu
NSRRC, Hsinchu, Taiwan
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The synchrotron radiation light produced from a dipole magnet is widely used to characterize beam parameters in synchrotron light source (photon synchrotron). The synchrotron radiation monitor (SRM) systems were implemented for the booster synchrotron and the storage ring at Taiwan Photon Source (TPS). The beam parameters of the booster were recorded during the energy ramping process through the CCD camera and streak camera. The beam size measurement and beam behavior observed of the storage ring were performed by X-ray pinhole camera and streak camera respectability. The results are summarized in this report.
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