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CBETA:首台带能量回收的多程超导直线加速器。

CBETA: First Multipass Superconducting Linear Accelerator with Energy Recovery.

作者信息

Bartnik A, Banerjee N, Burke D, Crittenden J, Deitrick K, Dobbins J, Gulliford C, Hoffstaetter G H, Li Y, Lou W, Quigley P, Sagan D, Smolenski K, Berg J S, Brooks S, Hulsart R, Mahler G, Meot F, Michnoff R, Peggs S, Roser T, Trbojevic D, Tsoupas N, Miyajima T

机构信息

Cornell Laboratory for Accelerator Based Sciences and Education, Cornell University, Ithaca, New York 14850, USA.

Brookhaven National Laboratory, Upton, New York 11973-5000, USA.

出版信息

Phys Rev Lett. 2020 Jul 24;125(4):044803. doi: 10.1103/PhysRevLett.125.044803.

Abstract

Energy recovery has been achieved in a multipass linear accelerator, demonstrating a technology for more compact particle accelerators operating at higher currents and reduced energy consumption. Energy delivered to the beam during the first four passes through the accelerating structure was recovered during four subsequent decelerating passes. High-energy efficiency was achieved by the use of superconducting accelerating cavities and permanent magnets. The fixed-field alternating-gradient optical system used for the return loop successfully transported electron bunches of 42, 78, 114, and 150 MeV in a common vacuum chamber. This new kind of accelerator, an eight-pass energy recovery linac, has the potential to accelerate much higher current than existing linear accelerators while maintaining small beam dimensions and consuming much less energy per electron.

摘要

在一台多程直线加速器中实现了能量回收,展示了一种用于更紧凑的粒子加速器的技术,这种加速器能够在更高电流下运行并降低能耗。在最初四次通过加速结构时传递给束流的能量,在随后的四次减速过程中被回收。通过使用超导加速腔和永久磁铁实现了高能效。用于返回环的固定磁场交变梯度光学系统在一个共同的真空室内成功传输了能量为42、78、114和150兆电子伏特的电子束团。这种新型加速器,即八程能量回收直线加速器,有可能在保持小束流尺寸的同时,比现有直线加速器加速更高的电流,并且每个电子消耗的能量要少得多。

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