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机构地区:[1]北京大学重离子物理研究所重离子物理教育部重点实验室,北京100871
出 处:《强激光与粒子束》2005年第7期1096-1100,共5页High Power Laser and Particle Beams
基 金:国家973项目资助课题(2002CB713603)
摘 要:射频超导谐振腔已经大规模地应用到粒子加速器领域,其优越之处在于它可以在CW模式或长宏脉冲模式下,提供高的加速梯度.射频超导已经成为自由电子激光和能量回收直线加速器的关键技术.经过30多年的研究发展,解决了超导腔的热崩溃、场致发射等诸多关键问题,目前加速梯度已经超过40 MV/m.高加速梯度的获得是射频超导领域的前沿热点,电抛光+低温热处理技术使射频超导腔的加速梯度提高3~4 MV/m.最新发展起来的超导腔的干式处理可以改善超导腔的表面状况,提高超导腔的Q值,抑制次级电子发射效应,有可能成为提高超导腔性能的又一有效手段.RF superconducting cavities can work at CW mode or long pulse mode with high accelerating gradient. RF superconducting technology is widely used in particle accelerators. A lot of front scientific facilities are set up based on RF superconducting accelerators from low beta to high beta. RF superconductivity has become a most important technology in FEL and ERL. In the recent 30 years, the technology has made rapid progresses. The accelerating gradient can be over 40 MV/m by special treatments. High accelerating gradient is the front research in the field of RF superconductivity. EP + bake can provide an important method to increase the accelerating gradient. The accelerating gradient can increase by 3~4 MV/m after EP + bake treatment and the Q-drop is also improved. Recent developed dry treatment technique on superconducting cavities can improve the Q value of superconducting cavities and decrease the multipacting effect. The dry treatment might become another effective method to improve the performance of superconducting cavities.
分 类 号:TL503[核科学技术—核技术及应用] TL53
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