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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >The conversion of CESR to operate as the Test Accelerator, CesrTA. Part 3: electron cloud diagnostics
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The conversion of CESR to operate as the Test Accelerator, CesrTA. Part 3: electron cloud diagnostics

机译:将CESR转换为测试加速器CesrTA。第3部分:电子云诊断

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摘要

Cornell's electron/positron storage ring (CESR)was modified over a series of accelerator shutdowns beginning in May 2008, which substantially improves its capability for research and development for particle accelerators. CESR's energy span from 1.8 to 5.6 GeV with both electrons and positrons makes it ideal for the study of a wide spectrum of accelerator physics issues and instrumentation related to present light sources and future lepton damping rings. Additionally a number of these are also relevant for the beam physics of proton accelerators. This paper is the third in a series of four describing the conversion of CESR to the test accelerator, CESRTA. The first two papers discuss the overall plan for the conversion of the storage ring to an instrument capable of studying advanced accelerator physics issues [1] and the details of the vacuum system upgrades [2]. This paper focusses on the necessary development of newinstrumentation, situated in four dedicated experimental regions, capable of studying such phenomena as electron clouds (ECs) and methods to mitigate EC effects. The fourth paper in this series describes the vacuum system modifications of the superconducting wigglers to accommodate the diagnostic instrumentation for the study of EC behavior within wigglers. While the initial studies of CESRTA focussed on questions related to the International Linear Collider damping ring design, CESRTA is a very versatile storage ring, capable of studying a wide range of accelerator physics and instrumentation questions.
机译:康奈尔大学的电子/正电子存储环(CESR)于2008年5月开始对一系列加速器进行了关闭,从而大大提高了其研发粒子加速器的能力。 CESR的电子和正电子能量范围从1.8到5.6 GeV,非常适合研究与当前光源和未来的轻子阻尼环有关的各种加速器物理问题和仪器。另外,这些中的许多也与质子加速器的束物理学有关。本文是四篇系列文章中的第三篇,描述了CESR向测试加速器CESRTA的转换。前两篇文章讨论了将存储环转换为能够研究高级加速器物理问题的仪器的总体计划[1]以及真空系统升级的细节[2]。本文着重于新仪器的必要开发,该仪器位于四个专用的实验区域,能够研究电子云(EC)现象和减轻EC效应的方法。本系列的第四篇论文描述了超导摆动器的真空系统修改,以适应用于研究摆动器中EC行为的诊断仪器。 CESRTA的初始研究侧重于与International Linear Collider阻尼环设计有关的问题,而CESRTA是一种用途广泛的存储环,能够研究各种加速器物理和仪器问题。

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