Calculation and Optimization of Resistive Wall and RF Cavity Impedance in Medium Energy Diffraction Limit Storage Ring

In the diffraction limit storage ring, the size of the vacuum chamber was greatly reduced compared with the third-generation synchronous light source due to the high-gradient small-aperture magnet, and the impedance of ring is significantly increased. Therefore, it is necessary to accurately evalua...

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Main Author: WANG Meng;ZHANG Wenzhi;TIAN Shunqiang;CAI Chuanbing;LIU Xinzhong
Format: Article
Language:English
Published: Editorial Board of Atomic Energy Science and Technology 2022-09-01
Series:Yuanzineng kexue jishu
Subjects:
Online Access:https://www.aest.org.cn/CN/10.7538/yzk.2022.youxian.0348
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author WANG Meng;ZHANG Wenzhi;TIAN Shunqiang;CAI Chuanbing;LIU Xinzhong
author_facet WANG Meng;ZHANG Wenzhi;TIAN Shunqiang;CAI Chuanbing;LIU Xinzhong
author_sort WANG Meng;ZHANG Wenzhi;TIAN Shunqiang;CAI Chuanbing;LIU Xinzhong
collection DOAJ
description In the diffraction limit storage ring, the size of the vacuum chamber was greatly reduced compared with the third-generation synchronous light source due to the high-gradient small-aperture magnet, and the impedance of ring is significantly increased. Therefore, it is necessary to accurately evaluate and optimize model of the impedance of the vacuum elements in the design stage. In the impedance budget, the resistance wall impedance accounts for a high proportion of the whole ring impedance, and a sharp resonance peak will appear when the frequency is close to 0, which has a great impact on the beam motion. In the RF system, the high-order mode of the cavity is an important source of the narrow-band impedance. Therefore, in the accelerator design stage, it is necessary to select the resistance wall of appropriate materials, accurately model of the RF cavity and the third harmonic cavity, calculate the impedance, and evaluate instability that may be caused. In this paper, the multi-layer resistance wall impedance of the medium energy diffraction limit storage ring was calculated and the optimized material of resistance wall was chosen for the diffraction limit storage ring. A vacuum chamber with distributed exhaust is required in the storage ring, and the thickness of copper coating of 1 μm film is the optimized material. For special vacuum chamber components, the internal structure is complex and it is impossible or difficult to implement NEG coating, or the centralized arrangement of air pump can meet the vacuum requirements, the stainless-steel internal coating with 5 μm copper film is considered. The impedance models of RF cavity and the third harmonic cavity were established and optimized by using numerical simulation program. The fluted beam tube can effectively transmit the high-order modes generated in the RF cavity and the third harmonic cavity to ensure the stability of the beam. The collective effects were caused by resistive wall impedance, the high order modes of RF cavity and the third harmonic cavity were analyzed and summarized. In the medium energy diffraction limit storage ring, the transverse impedance of the resistance wall will cause the transverse coupled multi beam instability, the impedance of the RF cavity and the third harmonic cavity will not cause the longitudinally coupled multi beam instability, and will not become a limiting factor for the improvement of the beam intensity in the subsequent light source upgraded. Meanwhile, effective control measures are put forward to solve the problems of beam instability. For transverse coupling multi beam instability, positive chromatic can be effectively suppressed.
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spelling doaj.art-88d1ac1129db45ada7f28fb19f2f5df02022-12-22T04:39:29ZengEditorial Board of Atomic Energy Science and TechnologyYuanzineng kexue jishu1000-69312022-09-0156918211831Calculation and Optimization of Resistive Wall and RF Cavity Impedance in Medium Energy Diffraction Limit Storage RingWANG Meng;ZHANG Wenzhi;TIAN Shunqiang;CAI Chuanbing;LIU Xinzhong 0Shanghai Key Laboratory of High Temperature Superconductivity, Department of Physics, College of Science, Shanghai University, Shanghai 200444, China;Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China;Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201204, China In the diffraction limit storage ring, the size of the vacuum chamber was greatly reduced compared with the third-generation synchronous light source due to the high-gradient small-aperture magnet, and the impedance of ring is significantly increased. Therefore, it is necessary to accurately evaluate and optimize model of the impedance of the vacuum elements in the design stage. In the impedance budget, the resistance wall impedance accounts for a high proportion of the whole ring impedance, and a sharp resonance peak will appear when the frequency is close to 0, which has a great impact on the beam motion. In the RF system, the high-order mode of the cavity is an important source of the narrow-band impedance. Therefore, in the accelerator design stage, it is necessary to select the resistance wall of appropriate materials, accurately model of the RF cavity and the third harmonic cavity, calculate the impedance, and evaluate instability that may be caused. In this paper, the multi-layer resistance wall impedance of the medium energy diffraction limit storage ring was calculated and the optimized material of resistance wall was chosen for the diffraction limit storage ring. A vacuum chamber with distributed exhaust is required in the storage ring, and the thickness of copper coating of 1 μm film is the optimized material. For special vacuum chamber components, the internal structure is complex and it is impossible or difficult to implement NEG coating, or the centralized arrangement of air pump can meet the vacuum requirements, the stainless-steel internal coating with 5 μm copper film is considered. The impedance models of RF cavity and the third harmonic cavity were established and optimized by using numerical simulation program. The fluted beam tube can effectively transmit the high-order modes generated in the RF cavity and the third harmonic cavity to ensure the stability of the beam. The collective effects were caused by resistive wall impedance, the high order modes of RF cavity and the third harmonic cavity were analyzed and summarized. In the medium energy diffraction limit storage ring, the transverse impedance of the resistance wall will cause the transverse coupled multi beam instability, the impedance of the RF cavity and the third harmonic cavity will not cause the longitudinally coupled multi beam instability, and will not become a limiting factor for the improvement of the beam intensity in the subsequent light source upgraded. Meanwhile, effective control measures are put forward to solve the problems of beam instability. For transverse coupling multi beam instability, positive chromatic can be effectively suppressed.https://www.aest.org.cn/CN/10.7538/yzk.2022.youxian.0348diffraction limit storage ringresistive wallrf cavitythird harmonic cavitybeam collective effect
spellingShingle WANG Meng;ZHANG Wenzhi;TIAN Shunqiang;CAI Chuanbing;LIU Xinzhong
Calculation and Optimization of Resistive Wall and RF Cavity Impedance in Medium Energy Diffraction Limit Storage Ring
Yuanzineng kexue jishu
diffraction limit storage ring
resistive wall
rf cavity
third harmonic cavity
beam collective effect
title Calculation and Optimization of Resistive Wall and RF Cavity Impedance in Medium Energy Diffraction Limit Storage Ring
title_full Calculation and Optimization of Resistive Wall and RF Cavity Impedance in Medium Energy Diffraction Limit Storage Ring
title_fullStr Calculation and Optimization of Resistive Wall and RF Cavity Impedance in Medium Energy Diffraction Limit Storage Ring
title_full_unstemmed Calculation and Optimization of Resistive Wall and RF Cavity Impedance in Medium Energy Diffraction Limit Storage Ring
title_short Calculation and Optimization of Resistive Wall and RF Cavity Impedance in Medium Energy Diffraction Limit Storage Ring
title_sort calculation and optimization of resistive wall and rf cavity impedance in medium energy diffraction limit storage ring
topic diffraction limit storage ring
resistive wall
rf cavity
third harmonic cavity
beam collective effect
url https://www.aest.org.cn/CN/10.7538/yzk.2022.youxian.0348
work_keys_str_mv AT wangmengzhangwenzhitianshunqiangcaichuanbingliuxinzhong calculationandoptimizationofresistivewallandrfcavityimpedanceinmediumenergydiffractionlimitstoragering