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A study of metastable ion Coulomb crystals in a polychromatic all-optical trap Decay process analysis by using supercomputer simulations

机译:通过使用超级计算机模拟研究多色全光捕获衰变过程分析中的亚料离子库仑晶体的研究

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Metastable ion Coulomb crystal (ICC) in the polychromatic optical superlattice (OSL) created by so-called rectified gradient forces is studied. Our analysis is based on the numerical solution of the nonlinear stochastic differential equations taking into account the trapping and dissipative forces, their quantum fluctuations, and Coulomb repulsion of ions. The key question is how long will this metastable highly ordered crystalline structure persist. The critical parameter determining the ICC destruction times t(d) is the OSL period L (at fixed intensity values of the optical fields). Our simulations demonstrate that t(d) of the ICC, consisting of several tens of mercury ions, experiences giant changes (by four orders of magnitude) at relatively slight variations of the optical superlattice period L in the range from 0.35 to 0.70 mm. We have shown that the dependence t(d) (L) can be approximated by the Arrhenius-like equation with an effective activation energy which is nonlinearly dependent on the OSL period L. These results explain the ultrahigh sensitivity t(d) (L) to the OSL period L and show how to adjust L to ensure all-optical confinement of ICC in the OSL from a fraction of a second to one and half minutes.
机译:研究了通过所谓的整流梯度力产生的多色光学超晶格(OSL)中的亚料离子库仑晶体(ICC)。我们的分析基于非线性随机微分方程的数值解,考虑到捕获和耗散力,它们的量子波动和离子的库仑排斥。关键问题是这种亚稳态高度有序的晶体结构持续多长时间。确定ICC破坏次数T(D)的关键参数是OSL周期L(以固定的光学字段的固定强度值)。我们的模拟表明,ICC的T(D)由几十汞离子组成,在光学超晶格时段L的相对较小的变化下,在0.35至0.70mm的范围内经历巨大变化(四个级别)。我们已经表明,依赖性T(d)(l)可以通过arrhenius的等式近似,其具有有效的激活能量,其非线性地依赖于OSL时期L.这些结果解释了超高敏感性T(d)(l)到OSL期限L并展示如何调整L以确保ICC在OSL中的所有光学限制从一秒到一个半分钟的一部分。

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