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用于可变能量回旋加速器中心稀有离子束项目的射频四极直线加速器后加速器的设计与开发。

Design and development of a radio frequency quadrupole linac postaccelerator for the Variable Energy Cyclotron Center rare ion beam project.

作者信息

Dechoudhury S, Naik V, Mondal M, Chatterjee A, Pandey H K, Mandi T K, Bandyopadhyay A, Karmakar P, Bhattacharjee S, Chouhan P S, Ali S, Srivastava S C L, Chakrabarti A

机构信息

Variable Energy Cyclotron Center, 1/AF, Bidhan Nagar, Kolkata 700064, India.

出版信息

Rev Sci Instrum. 2010 Feb;81(2):023301. doi: 10.1063/1.3280175.

Abstract

A four-rod type heavy-ion radio frequency quadrupole (RFQ) linac has been designed, constructed, and tested for the rare ion beam (RIB) facility project at VECC. Designed for cw operation, this RFQ is the first postaccelerator in the RIB beam line. It will accelerate A/q < or = 14 heavy ions coming from the ion source to the energy of around 100 keV/u for subsequent acceleration in a number of Interdigital H-Linac. Operating at a resonance frequency of 37.83 MHz, maximum intervane voltage of around 54 kV will be needed to achieve the final energy over a vane length of 3.12 m for a power loss of 35 kW. In the first beam tests, transmission efficiency of about 90% was measured at the QQ focus after the RFQ for O(5+) beam. In this article the design of the RFQ including the effect of vane modulation on the rf characteristics and results of beam tests will be presented.

摘要

为印度可变能量回旋加速器中心(VECC)的稀有离子束(RIB)设施项目设计、建造并测试了一台四杆型重离子射频四极加速器(RFQ)直线加速器。该RFQ专为连续波运行设计,是RIB束流线中的首个后加速器。它将把来自离子源的A/q ≤ 14的重离子加速到约100 keV/u的能量,以便在多个指状H型直线加速器中进行后续加速。以37.83 MHz的共振频率运行时,在3.12 m的叶片长度上要实现最终能量且功率损耗为35 kW,大约需要54 kV的最大叶片间电压。在首次束流测试中,对于O(5+)束,在RFQ后的QQ聚焦处测得的传输效率约为90%。本文将介绍RFQ的设计,包括叶片调制对射频特性的影响以及束流测试结果。

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