Fast SR beam position and intensity monitor for the experiments to study fast-flowing processes
A Fast Processes station is proposed for studying the detonation and shock wave processes as part of the experimental stations at the SKIF Center for Shared Use. The station includes a number of DIMEX detectors (Detector IMaging EXplosions). A DIMEX is capable of detecting synchrotron radiation (SR)...
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Published in | Russian physics journal Vol. 68; no. 3; pp. 471 - 478 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
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Springer International Publishing
01.03.2025
Springer Nature B.V |
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Abstract | A Fast Processes station is proposed for studying the detonation and shock wave processes as part of the experimental stations at the SKIF Center for Shared Use. The station includes a number of DIMEX detectors (Detector IMaging EXplosions). A DIMEX is capable of detecting synchrotron radiation (SR) from each electron bunch in the storage ring. Since the bunches can deviate from the equilibrium orbit and differ in current, a fast monitor of the SR beam position and intensity is needed to increase the accuracy of signal magnitude measurements and to measure the relative position and power of the beam radiation from each electron bunch in the storage ring. The readings from this monitor would allow correcting the measurements of the DIMEX detectors. As part of the fast SR beam position monitor, it is planned to place 4 sensors to measure the signal in the vicinity of the beam on the top, bottom, right and left. The signal ratios in the corresponding pairs of sensors are supposed to change with the beam position, and the sum of the signals from all sensors will change with the change of the total SR flux. During the experiment, the beam monitor will record the signals from all sensors synchronously with the DIMEX detector. After the experiment, the results recorded from the DIMEX detector will be adjusted in accordance with the monitor sensor signals. |
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AbstractList | A Fast Processes station is proposed for studying the detonation and shock wave processes as part of the experimental stations at the SKIF Center for Shared Use. The station includes a number of DIMEX detectors (Detector IMaging EXplosions). A DIMEX is capable of detecting synchrotron radiation (SR) from each electron bunch in the storage ring. Since the bunches can deviate from the equilibrium orbit and differ in current, a fast monitor of the SR beam position and intensity is needed to increase the accuracy of signal magnitude measurements and to measure the relative position and power of the beam radiation from each electron bunch in the storage ring. The readings from this monitor would allow correcting the measurements of the DIMEX detectors. As part of the fast SR beam position monitor, it is planned to place 4 sensors to measure the signal in the vicinity of the beam on the top, bottom, right and left. The signal ratios in the corresponding pairs of sensors are supposed to change with the beam position, and the sum of the signals from all sensors will change with the change of the total SR flux. During the experiment, the beam monitor will record the signals from all sensors synchronously with the DIMEX detector. After the experiment, the results recorded from the DIMEX detector will be adjusted in accordance with the monitor sensor signals. A Fast Processes station is proposed for studying the detonation and shock wave processes as part of the experimental stations at the SKIF Center for Shared Use. The station includes a number of DIMEX detectors (Detector IMaging EXplosions). A DIMEX is capable of detecting synchrotron radiation (SR) from each electron bunch in the storage ring. Since the bunches can deviate from the equilibrium orbit and differ in current, a fast monitor of the SR beam position and intensity is needed to increase the accuracy of signal magnitude measurements and to measure the relative position and power of the beam radiation from each electron bunch in the storage ring. The readings from this monitor would allow correcting the measurements of the DIMEX detectors. As part of the fast SR beam position monitor, it is planned to place 4 sensors to measure the signal in the vicinity of the beam on the top, bottom, right and left. The signal ratios in the corresponding pairs of sensors are supposed to change with the beam position, and the sum of the signals from all sensors will change with the change of the total SR flux. During the experiment, the beam monitor will record the signals from all sensors synchronously with the DIMEX detector. After the experiment, the results recorded from the DIMEX detector will be adjusted in accordance with the monitor sensor signals. |
Author | Glushak, A. A. Tyazhev, A. V. Zarubin, A. N. Aulchenko, V. M. Kornievsky, M. A. Shekhtman, L. I. Tolbanov, O. P. |
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Cites_doi | 10.3103/S1062873822701751 10.3103/S1062873819020254 10.1063/5.0030393 10.1134/S0020441210030036 10.1016/j.phpro.2016.11.033 10.1088/1748-0221/3/05/P05005 10.1016/j.nima.2008.12.163 |
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Keywords | Fast-flowing processes Fast position monitor Synchrotron radiation Radiation hardness |
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References | IA Rubtsov (3454_CR2) 2023; 87 L Shekhtman (3454_CR8) 2016; 84 VM Aulchenko (3454_CR3) 2008; 3 VM Aulchenko (3454_CR5) 2010; 53 LI Shekhtman (3454_CR6) 2019; 83 3454_CR1 VM Aulchenko (3454_CR4) 2009; A603 L Shekhtman (3454_CR7) 2020; 2299 GI Zebrev (3454_CR9) 2010 |
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Snippet | A Fast Processes station is proposed for studying the detonation and shock wave processes as part of the experimental stations at the SKIF Center for Shared... A Fast Processes station is proposed for studying the detonation and shock wave processes as part of the experimental stations at the SKIF Center for Shared... |
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SubjectTerms | Condensed Matter Physics Detectors Detonation Explosions Hadrons Heavy Ions Lasers Mathematical and Computational Physics Nuclear Physics Optical Devices Optics Photonics Physics Physics and Astronomy Position measurement Radiation Sensors Shock waves Storage rings (particle accelerators) Synchrotron radiation Theoretical |
Title | Fast SR beam position and intensity monitor for the experiments to study fast-flowing processes |
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