期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
上海光源500MHz超导腔水平测试 被引量:3
1
作者 蒲小云 侯洪涛 +7 位作者 马震宇 毛冬青 罗琛 李正 王岩 是晶 赵玉彬 刘建飞 《强激光与粒子束》 EI CAS CSCD 北大核心 2019年第11期117-122,共6页
上海光源是能量为3.5 GeV的第三代先进中能同步辐射光源,其储存环上安装了三台超导高频腔补偿电子因同步辐射等原因丢失的能量。为保障上海光源的长期稳定高效运行,中国科学院上海应用物理研究所和上海市低温超导高频腔技术重点实验室... 上海光源是能量为3.5 GeV的第三代先进中能同步辐射光源,其储存环上安装了三台超导高频腔补偿电子因同步辐射等原因丢失的能量。为保障上海光源的长期稳定高效运行,中国科学院上海应用物理研究所和上海市低温超导高频腔技术重点实验室共同研制了具备低高次模损失参数和可承受更高入射功率的新型500 MHz超导腔,作为上海光源在线运行超导高频腔的备用腔。超导铌腔经低温垂直测试达到所需加速性能后,需要与高功率输入耦合器、高次模吸收器、低温恒温器等集成并完成水平测试,获得超导腔模组的加速性能、低温性能和真空性能。介绍了超导腔备用腔的研制、集成和测试过程,采用文丘里(Venturi)校准法获得模组的静态功耗反应模组的低温性能,并通过高功率测试获得了超导腔备用腔模组的加速性能。测试结果表明:自主研制的500 MHz超导腔备用腔满足上海光源的工作需求,在超导腔的加速腔压为2.0 MV时,无载品质因数为1.2×109@4.2 K,且低温模组的静态热损耗为36.1 W。 展开更多
关键词 超导腔 低温模组 水平测试 无载品质因数 谐振频率
下载PDF
Simulation of higher order modes and loss factor of a new type of 500-MHz single cell superconducting cavity at SSRF 被引量:2
2
作者 YU Haibo LIU Jianfei +5 位作者 HOU Hongtao LU Changwang WEI Yelong MA Zhenyu FENG Ziqiang mao dongqing 《Nuclear Science and Techniques》 SCIE CAS CSCD 2011年第5期257-260,共4页
In this paper,higher order modes(HOMs) and loss factor of a new type of 500-MHz superconducting cavity is studied,by simulating its broadband HOMs damping at different positions of the ferrite HOM-absorber and differe... In this paper,higher order modes(HOMs) and loss factor of a new type of 500-MHz superconducting cavity is studied,by simulating its broadband HOMs damping at different positions of the ferrite HOM-absorber and different lengths of the ferrite.The results show that the impedance and Q value of the HOMs in transverse and longitudinal modes could be greatly reduced.The HOM longitudinal impedance could be damped to meet the requirement of SSRF beam instability threshold.The calculated loss factor of the new SC cavity was compared with cavities at SSRF.It was estimated that the HOM absorber could absorb a total power of 3.16 kW at 4-mm beam bunch length. 展开更多
关键词 损耗因子 高阶模 超导腔 光源 上海 模拟 单细胞 纵向阻抗
下载PDF
Beam trip diagnostic system at SSRF 被引量:2
3
作者 HOU Hongtao ZHAO Shenjie +5 位作者 LUO Chen ZHAO Yubin ZHANG Zhigang FENG Ziqiang mao dongqing LIU Jianfei 《Nuclear Science and Techniques》 SCIE CAS CSCD 2009年第5期261-264,共4页
In this paper we report the design and realization of beam trip diagnostic system at Shanghai Synchrotron Radiation Facility (SSRF). The system can find out the first fault signal in the key operation signals related ... In this paper we report the design and realization of beam trip diagnostic system at Shanghai Synchrotron Radiation Facility (SSRF). The system can find out the first fault signal in the key operation signals related to the RF system by analyzing the time sequence, also it can decide which trips occurs first among the three superconducting RF stations. All the states of monitored signals in a time period ahead and behind beam trip are recorded. The results are compared with those from other diagnostic tools at SSRF. The work is of help in improving reliability of the superconducting RF system and stability of the storage ring operation. 展开更多
关键词 SSRF 核技术 同步辐射光源 辐射装置
下载PDF
Design of large aperture 500 MHz 5-cell superconducting cavity
4
作者 WEI Yelong LIU Jianfei +5 位作者 HOU Hongtao MA Zhenyu mao dongqing FENG Ziqiang LU Changwang YU Haibo 《Nuclear Science and Techniques》 SCIE CAS CSCD 2012年第5期257-260,共4页
With the potential application of Energy Recovery Linac (ERL), the superconducting (SC) cavities were developed to deliver much higher current than before. Nowadays, the current of the international SC accelerator des... With the potential application of Energy Recovery Linac (ERL), the superconducting (SC) cavities were developed to deliver much higher current than before. Nowadays, the current of the international SC accelerator designed has already exceeded 100 mA. This paper presents the design of a new 500 MHz 5-cell SC cavity (SINAP 5-cell cavity), in which the parameters r/Q= 515.5 of the fundamental mode and the geometry factor G=275.8 are under an acceptable Radio Frequency (RF) field level (B peak /E acc =4.31 mT/MV/m and E peak /E acc =2.48). This design employs a larger beam pipe to propagate the Higher Order Modes (HOMs) out of the cavity and increases the damping efficiently for the dangerous HOMs. By simulation technique, it has been found that almost all the dangerous HOMs (including TE 111 , TM 110 , and TM 011 ) can be propagated into the beam pipe and are absorbed by ferrite absorbers, when the beam pile is enlarged. Finally, the loss factor for the new 5-cell cavity is also calculated. 展开更多
关键词 超导腔 设计 直线加速器 光圈 无线电频率 能量回收 几何因子 模拟技术
下载PDF
Great progress in developing 500 MHz single cell superconducting cavity in China 被引量:4
5
作者 LIU JianFei HOU HongTao +10 位作者 mao dongqing FENG ZiQiang MA ZhenYu LUO Chen ZHAO ShenJie ZHAO YuBin YU HaiBo YIN Bo ZHANG ZhiGang ZHENG Xiang LI Zheng 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2011年第S2期169-173,共5页
Superconducting cavities have been adopted in many kinds of accelerator facilities such as synchrotron radiation light source, hard X-ray free electron laser linac, colliders and energy recovery linacs (ERL). The 500 ... Superconducting cavities have been adopted in many kinds of accelerator facilities such as synchrotron radiation light source, hard X-ray free electron laser linac, colliders and energy recovery linacs (ERL). The 500 MHz superconducting cavities will be a candidate to be installed in the high current accelerators and high current ERLs for their large beam aperture, low higher order modes impedance and high current threshold value. This paper presents great progress in the whole sequence of developing 500 MHz superconducting cavity in China. It describes the first in-house successful development of 500 MHz single cell superconducting cavity including the deep-drawing of niobium half cells, electron beam wielding of cavity, surface preparations and vertical testing. The highest accelerating gradient of the fabricated cavity #SCD-02 higher than 10 MV/m was obtained while the quality factor was better than 4×108 at 4.2 K, which has reached the world level of the same kind of cavities. 展开更多
关键词 SUPERCONDUCTING CAVITY DEEP-DRAWING electron beam WELDING surface processing vertical test accelerating performance
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部