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The design and performance of CW and pulsed power couplers - A review

机译:连续波和脉冲功率耦合器的设计与性能-综述

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The design of input power couplers represents one of the most important challenges of accelerators that use super-conducting RF technology. These devices must fulfill several functions while being subject to mechanical, electromagnetic, vacuum and cryogenic constraints. The rapidly increasing number of projects, planned or under construction, which propose to use super-conducting cavities has prompted developments in power couplers for both CW and pulsed applications. Amongst the projects for which couplers have been, or are being, developed one finds VUV and X-ray free electron lasers (based on self-amplified spontaneous emission), spallation neutron sources (SNS), energy recovery linacs, and high energy colliders. We will review the design requirements and performances obtained for several of these couplers. Particular attention will be paid to the couplers which have been used on the TESLA Test Facility at DESY, the variations of this coupler which are under consideration for future synchrotron light sources and the coupler chosen for use on the SNS. (c) 2006 Published by Elsevier B.V.
机译:输入功率耦合器的设计是使用超导RF技术的加速器的最重要挑战之一。这些设备必须满足多种功能,同时还要受到机械,电磁,真空和低温的约束。提议使用超导腔的计划中或在建项目的数量迅速增加,促使CW和脉冲应用的功率耦合器得到了发展。在已经或正在开发耦合器的项目中,有一个发现了VUV和X射线自由电子激光(基于自放大自发发射),散裂中子源(SNS),能量回收直线加速器和高能对撞机。我们将审查其中一些耦合器的设计要求和性能。将特别关注在DESY的TESLA测试设备上使用的耦合器,正在考虑用于未来同步加速器光源的耦合器的变化以及为SNS选择使用的耦合器。 (c)2006年由Elsevier B.V.发布

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