The beam-based calibration of an X-ray pinhole camera at SSRF

  • A pinhole camera for imaging X-ray synchrotron radiation from a dipole magnet is now in operation at the Shanghai Synchrotron Radiation Facility (SSRF) storage ring. The electron beam size is derived by unfolding the radiation image and the point spread function (PSF) with deconvolution techniques. The performance of the pinhole is determined by the accuracy of the PSF measurement. This article will focus on a beam-based calibration scheme to measure the PSF system by varying the beam images with different quadrupole settings and fitting them with the corresponding theoretical beam sizes. Applying this method at SSRF, the PSF value of the pinhole is revised from 37 to 44 μm. The deviation in beam size between the theoretical value and the measured value is minimized to 4% after calibration. This optimization allows us to observe the horizontal disturbance due to injection down to as small as 0.5 μm.
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  • [1] Takano S. Beam Diagnostics with Synchrotron Radiation Light Sources, Proceedings of IPAC2010, 2010, 2392-23962 Lumpkin A H, YANG B X, YAO C Y et al. X-ray Imaging of the APS Storage Ring Beam Stability Effects: From the Alaskan Earthquake to Undulator Field Changes, PAC2003, 2003, 2423-24253 Boland M J, Spencer M. Vertical Beam Profile Measurement and Analysis with an X-ray Pinhole, EPAC08 2008. 1059-10614 Bergstrom J C, Vog J M. Nuclear Instruments and Methods in Physics Research A, 2008, 578: 441-4575 Thomas C A, Rehm G. Fast Pinhole Camera for Optimization of Top up Injection, BIW08, 2008a, 279-2816 Thomas C A, Rehm G. Pinhole Camera Resolution and Emittance Measurement, EPAC08, 2008b, 1254-12567 Tordeux M A, Cassinari L, Chubar O, Denard J. Ultimate Resolution of Soleil X-ray Pinhole Camera, DIPAC 2007, 2007, 180-1828 LENG Y, YE K, ZHOU W, CHEN Y. SSRF Beam Diag- nostics System Commissioning, DIPAC 2009, 2009, 24-269 HUANG G, CHEN J, CHEN Z, LENG Y. Nuclear Tech- niques, 2010, 33(11): 806-80910 Elleaume P, Fortgang C, Penel C et al. J. Synchrotron Rad., 1995, 2: 209-214
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LENG Yong-Bin, HUANG Guo-Qing, ZHANG Man-Zhou, CHEN Zhi-Chu, CHEN Jie and YE Kai-Rong. The beam-based calibration of an X-ray pinhole camera at SSRF[J]. Chinese Physics C, 2012, 36(1): 80-83. doi: 10.1088/1674-1137/36/1/014
LENG Yong-Bin, HUANG Guo-Qing, ZHANG Man-Zhou, CHEN Zhi-Chu, CHEN Jie and YE Kai-Rong. The beam-based calibration of an X-ray pinhole camera at SSRF[J]. Chinese Physics C, 2012, 36(1): 80-83.  doi: 10.1088/1674-1137/36/1/014 shu
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Received: 2011-03-25
Revised: 2011-05-06
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The beam-based calibration of an X-ray pinhole camera at SSRF

    Corresponding author: LENG Yong-Bin,

Abstract: A pinhole camera for imaging X-ray synchrotron radiation from a dipole magnet is now in operation at the Shanghai Synchrotron Radiation Facility (SSRF) storage ring. The electron beam size is derived by unfolding the radiation image and the point spread function (PSF) with deconvolution techniques. The performance of the pinhole is determined by the accuracy of the PSF measurement. This article will focus on a beam-based calibration scheme to measure the PSF system by varying the beam images with different quadrupole settings and fitting them with the corresponding theoretical beam sizes. Applying this method at SSRF, the PSF value of the pinhole is revised from 37 to 44 μm. The deviation in beam size between the theoretical value and the measured value is minimized to 4% after calibration. This optimization allows us to observe the horizontal disturbance due to injection down to as small as 0.5 μm.

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