High dimensional characterization of the longitudinal phase space formed in a radio frequency quadrupole

K. Ruisard, A. Aleksandrov, S. Cousineau, A. Shishlo, V. Tzoganis, A. Zhukov
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引用次数: 7

Abstract

Modern accelerator front ends almost exclusively include radio-frequency quadrupoles for initial capture and focusing of the low-energy beam. Dynamics in the RFQ define the longitudinal bunch parameters. Simulation of the SNS RFQ with PARMTEQ seeded with a realistic LEBT distribution produces a 2.5 MeV, 40 mA H- beam with root-mean-square emittance of 130 deg-keV. In measurement, a detailed characterization of the longitudinal phase space is made, including a novel study of the dependence of longitudinal emittance on transverse coordinates. This work introduces a new virtual slit technique that provides sub-slit resolution in an energy spectrometer as well as an approach for visualizing 4D phase space data. Through simulation and measurement, the RFQ-formed bunch is confirmed to have significant internal correlated structure. The high-dimensional features are shown to be in qualitative agreement. However, the measured rms emittances are up to 30% lower than predicted, closer to the design value of 95 deg-keV.
在射频四极中形成的纵向相空间的高维特征
现代加速器的前端几乎完全包括射频四极杆,用于低能束流的初始捕获和聚焦。RFQ中的动力学定义了纵向束参数。采用具有真实LEBT分布的PARMTEQ种子对SNS RFQ进行仿真,可产生2.5 MeV、40 mA的H束,平均发射度为130 deg-keV。在测量中,对纵向相空间进行了详细的表征,包括纵向发射度对横向坐标的依赖性的新研究。本文介绍了一种新的虚拟狭缝技术,该技术在能谱仪中提供了亚狭缝分辨率,并提供了一种可视化四维相空间数据的方法。通过仿真和测量,证实了rfq形成的束具有显著的内部关联结构。高维特征在定性上是一致的。然而,测量的均方根发射比预测低30%,更接近95度kev的设计值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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