在高强度离子束中,快速电荷再分配导致磁芯空化

K. Ruisard, A. Aleksandrov
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引用次数: 6

摘要

最近,第一次直接测量全6D加速器束分布被报道[1]。这项工作观察到能量和横向坐标之间的相关性,因此能量分布在横向核心附近变得空心和双峰。在这篇文章中,一个类似的结构出现在一个最初不相关的高密度束束的膨胀中,作为非线性空间电荷力的速度扰动的结果。当6D相空间投影到一维和二维轴上时,这种空化会被掩盖。这种现象在加速器系统中还没有得到广泛的认识,但可以与激光电离纳米团簇和衍射电子源的观察相比较。虽然这种效应提供了对测量的地核相关的起源的深入了解,但它并没有提供一个完整的描述。通过射频四极杆进行自洽模拟,可以更好地再现被测结构。[1]张建军,张建军,张建军,等。中国科学:地球科学,2016,33(1):1 - 4。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rapid charge redistribution leading to core hollowing in a high-intensity ion beam
Recently, the first direct measurement of a full 6D accelerator beam distribution was reported [1]. That work observed a correlation between energy and transverse coordinates, for which the energy distribution becomes hollowed and double-peaked near the transverse core. In this article, a similar structure is shown to emerge in expansion of an initially uncorrelated, high density bunched beam as the result of velocity perturbation from nonlinear space charge forces. This hollowing is obscured when the 6D phase space is projected onto one- and two-dimensional axes. This phenomenon has not been widely recognized in accelerator systems, but parallels can be drawn to observations of laser-ionized nanoclusters and electron sources for diffraction. While this effect provides insight into the origin of the measured core correlation, it does not provide a complete description. A better reproduction of the measured structure can be obtained via self-consistent simulation through the radio-frequency quadrupole. [1] B. Cathey, S. Cousineau, A. Aleksandrov, and A. Zhukov, PRL 121, 064804 (2018).
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