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Spontaneous nucleation and dynamics of kink defects in zigzag arrays of trapped ions

机译:捕获离子之字形阵列中的自发形核和扭结缺陷动力学

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摘要

The spontaneous nucleation and dynamics of topological kink defects have been studied in trapped arrays of 41-43 Yb ions. The number of kinks formed as a function of quench rate across the linear-zigzag transition is measured in the underdamped regime of the inhomogeneous Kibble-Zurek theory. The experimental results agree well with molecular dynamics simulations, which show how losses mask the intrinsic nucleation rate. Simulations indicate that doubling the ion number and optimization of laser cooling can help reduce the effect of losses. A range of kink dynamics is observed including configural change, motion and lifetime, and behavioral sensitivity to ion number.
机译:在41-43 Yb离子的俘获阵列中研究了拓扑扭结缺陷的自发成核和动力学。在不均匀的Kibble-Zurek理论的阻尼不足的情况下,测量了跨线性之字形跃迁形成的扭结数与淬灭速率的函数。实验结果与分子动力学模拟非常吻合,后者显示了损失如何掩盖了固有成核速率。仿真表明,将离子数加倍和优化激光冷却可以帮助减少损失的影响。观察到一系列的扭折动力学,包括结构变化,运动和寿命以及对离子数的行为敏感性。

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