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Macro-particle simulation study on transverse halo collimator for J-PARC linac

机译:J-PARC直线加速器横向光晕准直器的宏观粒子模拟研究

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To realize the transverse emittance required for the ring injection, a transverse halo collimation system of the charge-exchange type has been developed for J-PARC (Japan Proton Accelerator Research Complex) linac. In this type of collimation system, negative hydrogen ions constituting a tail portion are charge-exchanged to protons with thin foil collimators. Then, the generated protons are separated by a bending magnet to be delivered to a dedicated beam dump. Because a two-species beam is transported along the collimation system, a special care is to be taken to avoid the uncontrolled beam loss along the beam transport. To this end, it is of practical importance to develop an accurate numerical model that has the capability of both particle tracking with space-charge effects and modeling of scattering at the charge-exchange foil. In this paper, a numerical model is developed for the collimation system using a three-dimensional particle-in-cell code, IMPACT, and a Monte-Carlo simulation tool kit, GEANT. Uncontrolled beam loss along the collimation system has been evaluated with this model, and the optimum foil thickness has been determined for the collimation system.
机译:为了实现环注入所需的横向发射,已经为J-PARC(日本质子加速器研究中心)直线加速器开发了电荷交换型横向光晕准直系统。在这种类型的准直系统中,构成尾部的负氢离子通过薄箔准直器被电荷交换为质子。然后,所产生的质子被弯曲磁体分离,并被传送到专用的束流收集器。由于两种光束沿准直系统传输,因此应特别注意避免沿光束传输不受控制的光束损失。为此,开发一种精确的数值模型具有实际意义,该数值模型既可以跟踪具有空间电荷效应的粒子,又可以对电荷交换箔上的散射进行建模。在本文中,使用三维粒子内代码IMPACT和蒙特卡洛仿真工具套件GEANT为准直系统开发了一个数值模型。已使用此模型评估了沿准直系统的光束失控,并确定了准直系统的最佳箔厚度。

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