首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Conditions for minimization of halo particle production during transverse compression of intense ion charge bunches in the Paul Trap Simulator Experiment (PTSX)
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Conditions for minimization of halo particle production during transverse compression of intense ion charge bunches in the Paul Trap Simulator Experiment (PTSX)

机译:在Paul Trap模拟器实验(PTSX)中,在横向压缩强离子电荷束的过程中将光晕颗粒产生最小化的条件

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摘要

The Paul Trap Simulator Experiment (PTSX) is a compact laboratory Paul trap that simulates propagation of a long, thin charged-particle bunch coasting through a multi-kilometer-long magnetic alternating-gradient (AG) transport system by putting the physicist in the frame-of-reference of the beam. The transverse dynamics of particles in both systems are described by the same sets of equations— including all nonlinear space-charge effects. The time-dependent quadrupolar voltages applied to the PTSX confinement electrodes correspond to the axially dependent magnetic fields applied in the AG system. This paper presents the results of experiments in which the amplitude of the applied confining voltage is changed over the course of the experiment in order to transversely compress a beam with an initial depressed tune v/v_0~0.9. Both instantaneous and smooth changes are considered. Particular emphasis is placed on determining the conditions that minimize the emittance growth and, generally, the number of particles that are found at large radius (so-called halo particles) after the beam compression. The experimental data are also compared with the results of particle-in-cell (PIC) simulations performed with the WARP code.
机译:保罗陷阱模拟器实验(PTSX)是一个紧凑的实验室保罗陷阱,通过将物理学家置于框架中,可以模拟长而细的带电粒子束沿多公里长的磁性交变梯度(AG)传输系统滑行的传播。光束的参考。两个系统中粒子的横向动力学由相同的方程组描述-包括所有非线性空间电荷效应。施加到PTSX限制电极的时间相关的四极电压对应于AG系统中施加的轴向相关磁场。本文介绍了实验结果,其中在实验过程中改变施加限制电压的幅度,以横向压缩具有初始下陷曲调v / v_0〜0.9的光束。同时考虑瞬时变化和平稳变化。特别强调确定最小化发射率增长的条件,以及通常确定在束压缩后在大半径处发现的粒子(所谓的光晕粒子)的数量。还将实验数据与使用WARP代码执行的单元中粒子(PIC)模拟的结果进行了比较。

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