Twist-and-store entanglement in bimodal and spin-1 Bose-Einstein condensates

A. Niezgoda, E. Witkowska, Safoura S. Mirkhalaf
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引用次数: 1

Abstract

A scheme for dynamical stabilization of entanglement quantified by the quantum Fisher information is analyzed numerically and analytically for bimodal and spin-1 Bose-Einstein condensates in the context of atomic interferometry. The scheme consists of twisting dynamics followed by a single rotation of a state which limits further evolution around stable center fixed points in the mean-field phase space. The resulting level of entanglement is of the order or larger than at the moment of rotation. It is demonstrated that the readout measurement of parity quantifies the level of entanglement during entire evolution.
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双峰态和自旋为1的玻色-爱因斯坦凝聚体中的扭曲与储存纠缠
在原子干涉测量的背景下,对双峰态和自旋为1的玻色-爱因斯坦凝聚体的纠缠态动力学稳定方案进行了数值和解析分析。该方案包括扭曲动力学,然后是一个状态的单次旋转,这限制了在平均场相空间中围绕稳定中心固定点的进一步演化。由此产生的缠结水平与旋转力矩相等或更大。证明了宇称的读出测量量化了整个演化过程中的纠缠水平。
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