首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A low-frequency buncher field-variation study on a 750 keV H~- beam to increase Drift Tube Linac capture
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A low-frequency buncher field-variation study on a 750 keV H~- beam to increase Drift Tube Linac capture

机译:750 kev H〜梁增加漂移管LINAC捕获的低频束频场 - 变异研究

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摘要

Low-frequency (such as 16.77 MHz) RF bunchers are widely used in RF accelerator systems for longitudinal compression of pulses into a single RF bucket, which increases instantaneous beam intensity for time-dependent studies. In this study, the dependency of capture into a 201.25 MHz Drift Tube Linac (DTL) was measured as a function of gap voltage for a 16.77 MHz buncher on chopped H~- beam (approximately 25 ns at 750 keV, 10 mA peak current). The multiparticle code PARMILA was used to simulate the phase-space distribution of the 10 mA, 750 keV, H~- beam at the entrance to DTL with a wide range of the Low-Frequency Buncher (LFB) field (10 kV to 35 kV). The measurement and simulation indicated that the DTL capture could be dilute (reduced) for a non-optimized buncher field to a pre-configured beamline geometry. The data shows that changing the bunch field while keeping the incoming beam current and energy constant does not significantly alter the beam's emittance. However, downstream beam capture into the DTL is changed for a non-optimized phase-space bunching distance with the buncher field.
机译:低频(例如16.77MHz)RF Bunchers广泛用于RF加速器系统,用于纵向压缩脉冲进入单个RF铲斗,这增加了时间依赖性研究的瞬时光束强度。在本研究中,捕获到201.25MHz漂移管LINAC(DTL)的依赖性被测量为16.77MHz束上的间隙电压的函数,在切碎的H〜梁上(约25ns在750keV,10 mA峰值电流) 。 Multiplicle Code Parmila用于模拟10 mA,750kev,H〜 - 梁的相位空间分布,在入口处与DTL的宽范围的低频Buncher(LFB)场(10kV至35 kV )。测量和仿真表明,DTL捕获可以为未优化的Buncher字段稀释(减少)到预先配置的波束线几何形状。数据显示,在保持传入光束电流和能量常数保持束场的同时改变束场不会显着改变光束的发射率。然而,对于与Buncher场的非优化的相空间束缚距离改变下游光束捕获变为DTL。

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