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离子晶体中缺陷形成的 Kibble-Zurek 标度律的观测。

Observation of the Kibble-Zurek scaling law for defect formation in ion crystals.

机构信息

QUANTUM, Institut für Physik, Universität Mainz, Staudingerweg 7, 55128 Mainz, Germany.

出版信息

Nat Commun. 2013;4:2290. doi: 10.1038/ncomms3290.

Abstract

Traversal of a symmetry-breaking phase transition at finite rates can lead to causally separated regions with incompatible symmetries and the formation of defects at their boundaries, which has a crucial role in quantum and statistical mechanics, cosmology and condensed matter physics. This mechanism is conjectured to follow universal scaling laws prescribed by the Kibble-Zurek mechanism. Here we determine the scaling law for defect formation in a crystal of 16 laser-cooled trapped ions, which are conducive to the precise control of structural phases and the detection of defects. The experiment reveals an exponential scaling of defect formation γ(β), where γ is the rate of traversal of the critical point and β=2.68±0.06. This supports the prediction of β=8/3≈2.67 for finite inhomogeneous systems. Our result demonstrates that the scaling laws also apply in the mesoscopic regime and emphasizes the potential for further tests of non-equilibrium thermodynamics with ion crystals.

摘要

在有限速率下穿过对称破缺相变会导致因果分离的区域,这些区域具有不兼容的对称性,并在它们的边界处形成缺陷,这在量子和统计力学、宇宙学和凝聚态物理中具有关键作用。该机制被推测遵循由 Kibble-Zurek 机制规定的普适标度律。在这里,我们确定了在 16 个激光冷却囚禁离子晶体中形成缺陷的标度律,这有利于精确控制结构相和检测缺陷。实验揭示了缺陷形成γ(β)的指数标度律,其中γ是临界点的穿越速率,β=2.68±0.06。这支持了有限非均匀系统β=8/3≈2.67 的预测。我们的结果表明,标度律也适用于介观范围,并强调了离子晶体进一步测试非平衡热力学的潜力。

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