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Theory of longitudinal beam halo in RF linacs. I. Core/test-particle formulation

机译:射频直线加速器中的纵向束晕理论。 I.核心/测试粒子的制定

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For intense beams, the analysis of tenuous halo components of the particle distribution that surround the main core of the beam can be challenging. So-called core/test-particle models in which a test-particle is evolved in the applied and space-charge forces of the beam core have been instrumental in understanding the structure and extent of transverse beam halo produced by resonant particle interactions with the oscillating space-charge forces of a mismatched beam core. Here we present a core/test-particle model developed for the analysis of longitudinal beam halo in intense, ion-beam rf linacs. Equations of motion are derived for a test-particle moving interior to, and exterior to, a uniform density ellipsoidal beam bunch. Coupled transverse-longitudinal mismatch modes of the ellipsoidal beam envelope are analyzed. Typical parameters suggest the possibility of a low-order resonant interaction between longitudinal particle oscillations and a low-frequency envelope mode. Properties of this resonance are analyzed in an accompanying paper by the authors in these proceedings.
机译:对于强光束,分析围绕光束主核的粒子分布的连续晕环分量可能会很有挑战性。所谓的核/测试粒子模型,在其中测试粒子在外力作用下演化,束核的空间电荷力有助于理解由共振粒子与振荡相互作用产生的横向束晕的结构和程度不匹配的梁芯的空间电荷力。在这里,我们提出了一种用于分析强离子束rf直线加速器中的纵向束晕的核心/测试粒子模型。对于在均匀密度椭圆形束束内部和外部移动的测试粒子,导出了运动方程。分析了椭圆形束包络的耦合的横向-纵向失配模式。典型参数表明纵向粒子振荡与低​​频包络模式之间可能发生低阶共振相互作用。作者在这些程序中在随附的论文中分析了这种共振的性质。

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