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Status of the IHEP 1.3 GHz superconducting RF program 被引量:1
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作者 GAO Jie ZHAI JiYuan +16 位作者 PAN WeiMing LI ShaoPeng SUN Yi DAI JianPing CHI YunLong LI ZhongQuan ZHAO TongXian HUANG TongMing MA Qiang GE Rui LI ChunHua GUO HaiSheng WANG GuangWei QIU Feng LIN HaiYing HOU Mi WANG QunYao 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2011年第S2期154-159,共6页
The 1.3 GHz superconducting radio-frequency (SRF) technology is one of the key technologies for the ILC and future XFEL and ERL projects in China. With the aim to develop 1.3 GHz SRF technology, IHEP has started a pro... The 1.3 GHz superconducting radio-frequency (SRF) technology is one of the key technologies for the ILC and future XFEL and ERL projects in China. With the aim to develop 1.3 GHz SRF technology, IHEP has started a program to build an SRF Accelerating Unit. This unit contains a 9-cell 1.3 GHz superconducting cavity, a short cryomodule, a high power input coupler, a tuner and a low level RF system. This program also includes the SRF laboratory upgrade, which will permit the unit to be built and tested at IHEP. The unit will be used for the 1.3 GHz SRF system integration study, high power horizontal test and possible beam test in the future. In this paper, we report the recent R&D status of this program. The first large grain low-loss shape 9-cell superconducting RF cavity made by IHEP reached 20 MV/m in the first vertical test in July, 2010. The prototype tuner and low level RF (LLRF) system are under test. The high power input coupler and cryomodule are under fabrication. Several key SRF facilities for 9-cell cavity surface treatment and pre-tuning were successfully commissioned and are in operation. 展开更多
关键词 1.3 ghz superconducting rf 9-cell CAVITY high power input COUPLER TUNER LLrf cryomodule
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High RF power tests of the first 1.3 GHz fundamental power coupler prototypes for the SHINE project 被引量:4
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作者 Zhen-Yu Ma Shen-Jie Zhao +9 位作者 Xu-Ming Liu Yue-Chao Yu Hong-Ru Jiang Xiang Zheng Qiang Chang Zi-Gang Zhang Kai Xu Yan Wang Yu-Bin Zhao Hong-Tao Hou 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2022年第1期107-119,共13页
The Shanghai High Repetition Rate XFEL and Extreme Light Facility(SHINE)project will use 6001.3 GHz fundamental power couplers,which are modified based on TTF-Ⅲ power couplers,for continuous-wave operation with input... The Shanghai High Repetition Rate XFEL and Extreme Light Facility(SHINE)project will use 6001.3 GHz fundamental power couplers,which are modified based on TTF-Ⅲ power couplers,for continuous-wave operation with input power up to approximately 7 kW.The first batch of 20 sets of 1.3 GHz coupler prototypes was fabricated from three domestic manufacturers for the SHINE project.To better characterize the radio frequency conditioning phenomena for validating the performance of power couplers,a room temperature test stand was designed,constructed,and commissioned for the SHINE 1.3 GHz power couplers.In addition,a horizontal test cryostat was built to test the 1.3 GHz superconducting cavities,fundamental power couplers,tuners,and other components as a set.The results of these tests indicate that the 1.3 GHz couplers are capable of handling up to 14 kW continuous waves.Herein,the main aspects of the radio frequency design and construction of the test stand,along with the test results of the high-power conditioning of the 1.3 GHz couplers,are described. 展开更多
关键词 superconducting accelerating cryomodule 1.3 ghz fundamental power coupler rf conditioning Test bench Horizontal test cryostat
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Successful Nitrogen Doping of 1.3 GHz Single Cell Superconducting Radio-Frequency Cavities 被引量:2
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作者 陈术 郝建奎 +8 位作者 林林 朱凤 冯立文 王芳 谢华木 郭鑫 陈蒙 全胜文 刘克新 《Chinese Physics Letters》 SCIE CAS CSCD 2018年第3期75-78,共4页
A high intrinsic quality factor (Q0) of a superconducting radio-frequency cavity is beneficial to reducing the oper- ation costs of superconducting accelerators. Nitrogen doping (N-doping) has been demonstrated as... A high intrinsic quality factor (Q0) of a superconducting radio-frequency cavity is beneficial to reducing the oper- ation costs of superconducting accelerators. Nitrogen doping (N-doping) has been demonstrated as a aseful way to improve Q0 of the superconducting cavity in recent years. N-doping researches with 1.3 GHz single cell cavities are carried out at Peking University and the preliminary results are promising. Our recipe is slightly different from other laboratories. After 250μm polishing, high pressure rinsing and 3 h high temperature annealing, the cavities are nitrogen doped at 2.7-4.0Pa for 20rain and then followed by 15μm electropolishing. Vertical test results show that Q0 of a 1.3 GHz single cell cavity made of large grain niobium has increased to 4 ×10 10 at 2.0K and medium gradient. 展开更多
关键词 Successful Nitrogen Doping of 1.3 ghz Single Cell superconducting Radio-Frequency Cavities BCP BCS Figure
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A digital low-level radio-frequency system R&D for a 1.3 GHz nine-cell cavity
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作者 邱丰 高杰 +7 位作者 林海英 刘熔 马新朋 沙鹏 孙毅 王光伟 王群要 徐波 《Chinese Physics C》 SCIE CAS CSCD 2012年第3期261-266,共6页
To test and verify the performance of the digital low-level radio-frequency (LLRF) and tuner system designed by the IHEP RF group, an experimental platform with a retired KEK 1.3 GHz nine-cell cavity is set up. A ra... To test and verify the performance of the digital low-level radio-frequency (LLRF) and tuner system designed by the IHEP RF group, an experimental platform with a retired KEK 1.3 GHz nine-cell cavity is set up. A radio-frequency (RF) field is established successfully in the cavity and the frequency of the cavity is locked by the tuner in ±0.5°(about ±1.2 kHz) at room temperature. The digital LLRF system performs well in a five-hour experiment, and the results show that the system achieves field stability at amplitude 〈0.1% (peak to peak) and phase 〈0.1° (peak to peak). This index satisfies the requirements of the International Linear Collider (ILC), and this paper describes this closed-loop experiment of the LLRF system. 展开更多
关键词 LLrf TUNER 1.3 ghz rf ILC
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HOMs simulation and measurement results of IHEP02 cavity
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作者 郑洪娟 翟纪元 +1 位作者 赵同宪 高杰 《Chinese Physics C》 SCIE CAS CSCD 2015年第11期112-116,共5页
In accelerator RF cavities, there exists not only the fundamental mode which is used to accelerate the beam, but also higher order modes(HOMs). The higher order modes excited by the beam can seriously affect beam qu... In accelerator RF cavities, there exists not only the fundamental mode which is used to accelerate the beam, but also higher order modes(HOMs). The higher order modes excited by the beam can seriously affect beam quality, especially for the higher R/Q modes. 1.3 GHz low-loss 9-cell superconducting cavity as a candidate for ILC high gradient cavity, the properties of higher order mode has not been studied carefully. IHEP based on existing low loss cavity, designed and developed a large grain size 1.3 GHz low-loss 9-cell superconducting cavity(IHEP02cavity). The higher order mode coupler of IHEP02 used TESLA coupler's design. As a result of the limitation of the mechanical design, the distance between higher order mode coupler and end cell is larger than TESLA cavity.This paper reports on measured results of higher order modes in the IHEP02 1.3 GHz low-loss 9-cell superconducting cavity. Using different methods, Q e of the dangerous modes passbands have been obtained. The results are compared with TESLA cavity results. R/Q of the first three passbands have also been obtained by simulation and compared with the results of the TESLA cavity. 展开更多
关键词 1.3 ghz 9-cell superconducting cavity low-loss shape higher order modes QE experimental measurements
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