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Fundamental power coupler development for low-beta superconducting cavities.

机译:低β超导腔的基本功率耦合器开发。

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The construction of a re-accelerator for secondary ion beams is currently underway at the National Superconducting Cyclotron Laboratory (NSCL). This re-accelerating linear accelerator (linac) will use superconducting quarter-wave resonators operating at 80.5 MHz with beta = 0.041 and beta = 0.085, where beta is the velocity of a particle relative to the speed of light. Input coupling will be done using a coaxial probe-type radio frequency (RF) fundamental power coupler (FPC) for both quarter-wave resonator (QWR) cavities. Custom-designed power couplers are expensive, complicated, and can have long lead times. The FPCs presented in this thesis will be operated with fixed coupling, using continuous wave (CW) input power operating at a maximum of 1 kW. The key component of the coupler is a commercially-available RF feedthrough to reduce the cost and production time. This feedthrough allows the cavity to maintain a clean vacuum with pressure less than 1 x 10-8 torr. Another concern is the heat leak to the cryomodule's cold mass at 4.5 K. The design goal for each coupler is to produce less than 1 W of static heat load to the cold mass.;Four prototype FPCs were fabricated. Two of the FPCs were assembled back-to-back, pumped out, and conditioned with both traveling wave and standing wave power using a 1 kW RF amplifier. Experience with the prototype FPCs provided the basis for the design of production FPCs for the re-accelerator.
机译:国家超导回旋加速器实验室(NSCL)目前正在进行二次离子束加速器的建设。这种重新加速的线性加速器(直线加速器)将使用工作于80.5 MHz的超导四分之一波长谐振器,其中beta = 0.041和beta = 0.085,其中beta是相对于光速的粒子速度。对于两个四分之一波长谐振器(QWR)腔,将使用同轴探针型射频(RF)基本功率耦合器(FPC)进行输入耦合。定制设计的功率耦合器价格昂贵,复杂且交货期长。本文介绍的FPC将以最大耦合功率为1 kW的连续波(CW)输入功率在固定耦合下运行。耦合器的关键组件是商用RF馈通,以降低成本和缩短生产时间。该馈通允许空腔在压力小于1 x 10-8托时保持干净的真空。另一个需要考虑的问题是,在4.5 K时,低温模块的冷块会发生热泄漏。每个耦合器的设计目标是向冷块产生小于1 W的静态热负荷。制作了四个原型FPC。两个FPC背对背组装,抽出并使用1 kW RF放大器以行波功率和驻波功率进行调节。原型FPC的经验为重新加速器的生产FPC的设计奠定了基础。

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