CSRm高灵敏度工作点测量系统电子学研究

Electronic research on the high-sensitivity tune measurement system for CSRm

  • 摘要: 在兰州重离子加速器冷却储存环(HIRFL-CSR)上,传统束流工作点测量方法是利用高性能且结构复杂的功率放大器与激励电极对运动束流施加激励,通过频谱分析方法获取束流工作点;该方法在施加激励过程中会对运动的束流产生一定程度扰动,可能引起束流损失。针对这一缺陷,本研究旨在开发一种适用于重离子同步加速器束流工作点测量系统,实现无外部激励条件下微弱束流信号工作点高信噪比测量。本文基于二极管检波电路原理,完成该工作点测量系统研制,详细阐述该系统前端模拟电路设计思路与实现方案,并在HIRFL-CSR上开展112Sn33+粒子束流和238U35+粒子束流工作点在线测试实验。实验结果显示,该系统无需对运动束流施加激励即可测得束流工作点,且信噪比达30 dB。相较于传统重离子加速器束流工作点测量系统,该系统不仅能在无外部激励条件下实现微弱束流信号工作点高信噪比测量,同时具有结构简单、成本较低的优势,未来该方法还可进一步拓展至重离子加速器束流位置测量领域。

     

    Abstract:
    Background In the Heavy Ion Cooler-Storage-Ring Synchrotron in Lanzhou (HIRFL-CSR), the conventional beam tune measurement method employs high-performance and complex power amplifiers to excit beam, then acquires the beam tune by analyzing the spectrum of the Schottky detector. However, this method induces disturbance on the flying beam during the excitation, which may lead to beam loss or instability.
    Purpose To address this limitation, the present study aims to develop a beam tune measurement system suitable for heavy-ion synchrotrons, to realize high-signal-to-noise ratio (SNR) measurement of the tune of low beam current without excitation.
    Methods Based on the principle of diode detection circuits, this paper details the development of the tune measurement system, elaborating on the design philosophy and implementation of its front-end analog circuits. Online tune testing experiments were conducted on the HIRFL-CSR using 112Sn33+ and 238U35+ particle beams.
    Results Experimental results demonstrate that the system can measure beam tune at low beam current and without excitation, achieving a signal-to-noise ratio of 30 dB.
    Conclusions Compared to conventional heavy-ion accelerator beam tune measurement systems, this approach not only enables high-SNR measurement of low beam current without external excitation but also offers the advantages of structural simplicity and lower cost. This methodology holds potential for future extension into the field of heavy-ion accelerator beam position measurement.

     

/

返回文章
返回