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. 2017 Sep;96(3-1):032227.
doi: 10.1103/PhysRevE.96.032227. Epub 2017 Sep 26.

Dynamical ion transfer between coupled Coulomb crystals in a double-well potential

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Dynamical ion transfer between coupled Coulomb crystals in a double-well potential

Andrea Klumpp et al. Phys Rev E. 2017 Sep.

Abstract

We investigate the nonequilibrium dynamics of coupled Coulomb crystals of different sizes trapped in a double well potential. The dynamics is induced by an instantaneous quench of the potential barrier separating the two crystals. Due to the intra- and intercrystal Coulomb interactions and the asymmetric population of the potential wells, we observe a complex reordering of ions within the two crystals as well as ion transfer processes from one well to the other. The study and analysis of the latter processes constitutes the main focus of this work. In particular, we examine the dependence of the observed ion transfers on the quench amplitude performing an analysis for different crystalline configurations ranging from one-dimensional ion chains via two-dimensional zigzag chains and ring structures to three-dimensional spherical structures. Such an analysis provides us with the means to extract the general principles governing the ion transfer dynamics and we gain some insight on the structural disorder caused by the quench of the barrier height.

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