Classical scattering and fragmentation of clusters of ions in helical confinement

Ansgar SiemensZentrum für Optische Quantentechnologien, Fachbereich Physik, Universität Hamburg, Peter SchmelcherZentrum für Optische Quantentechnologien, Fachbereich Physik, Universität HamburgHamburg Center for Ultrafast Imaging, Universität Hamburg
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Abstract

We explore the scattering dynamics of classical Coulomb-interacting clusters of ions confined to a helical geometry. Ion clusters of equally charged particles constrained to a helix can form many-body bound states, i.e. they exhibit stable motion of Coulomb-interacting identical ions. We analyze the scattering and fragmentation behavior of two ion clusters, thereby understanding the rich phenomenology of their dynamics. The scattering dynamics is complex in the sense that it exhibits cascades of decay processes involving strongly varying cluster sizes. These processes are governed by the internal energy flow and the underlying oscillatory many-body potential. We specifically focus on the impact of the collision energy on the dynamics of individual ions during and immediately after the collision of two clusters, and on the internal dynamics of ion clusters that are excited during a cluster collision.
螺旋约束下离子簇的经典散射和碎裂
我们探索了限制在螺旋几何中的经典库仑相互作用离子簇的散射动力学。受限于螺旋形的带相同电荷粒子的离子群可以形成多体束缚态,即它们表现出库仑相互作用的相同离子的稳定运动。我们分析了两个离子团簇的散射和碎裂行为,从而理解了它们丰富的动力学现象。散射动力学是复杂的,因为它表现出一连串的衰变过程,涉及强烈变化的离子簇大小。这些过程受内部能量流和底层振荡多体势能的支配。我们特别关注碰撞能量对单个离子在两个团簇碰撞期间和碰撞后的动力学的影响,以及在团簇碰撞期间被激发的离子团簇的内部动力学。
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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