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Evaluation of the 3-GeV proton beam profile at the spallation target of the JSNS

机译:在JSNS剥落目标上评估3-GeV质子束剖面

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摘要

At JSNS, 3-GeV protons beam is delivered from rapid cycling synchrotron (RCS) to the spallation neutron target. In order to reduce the damage of pitting on the target container, the peak current density should be kept as small as possible. In this study, the beam profile at spallation neutron target is evaluated. The phase-space distribution, including the space-charge effect, is calculated with SIMPSONS code. The beam profile on the target is obtained with the transfer matrix from exit of RCS to the target. As for injection to RCS, two methods of correlated and anti-correlated painting are considered. By using anti-correlated painting for injection of beam at RCS, it is found the shape of beam becomes flatter than the distribution by using correlated painting. As other aspect for the study of target, in order to carry out target performance test especially for the study of pitting issue, it is better to have the beam profile variety from the beginning of facility. The adjustable range for the beam profile at the beginning is also studied. Although the beam shape is narrow and the duty is very low, the strong enough peak density is achievable equivalent as I MW. (c) 2006 Elsevier B.V. All rights reserved.
机译:在JSNS,3-GeV质子束从快速循环同步加速器(RCS)传递到散裂中子靶。为了减少点蚀对目标容器的损害,峰值电流密度应保持尽可能小。在这项研究中,评估了散裂中子目标的射束轮廓。使用SIMPSONS代码计算包括空间电荷效应在内的相空间分布。使用从RCS出口到目标的传输矩阵获得目标的光束轮廓。至于向RCS的注入,考虑了相关和反相关绘画的两种方法。通过使用反相关绘画在RCS处注入光束,发现通过使用相关绘画,光束的形状变得比分布更平坦。作为目标研究的另一个方面,为了进行目标性能测试,尤其是对于点蚀问题的研究,最好从设备开始就具有光束轮廓变化。在开始时还研究了光束轮廓的可调范围。尽管光束形状较窄且占空比非常低,但可以实现与I MW等效的足够强的峰值密度。 (c)2006 Elsevier B.V.保留所有权利。

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