论文标题

使用Ultracold Atoms模仿磁光法拉第效应

Emulation of magneto-optic Faraday effect using ultracold atoms

论文作者

Zheng, Zhen, Wang, Z. D.

论文摘要

我们提出了一项逮捕计划,以模仿超低原子气体中著名的法拉第效应。受到光场和骨气原子之间的相似性的启发,我们代表了在激光 - 原子相互作用伴随的原子传输中培养基中的光传播。人工磁光法拉第效应很容易通过原子的旋转不平衡发出信号,而激光场的设置具有高量子操作的高可控性。目前的方案确实是可行的,可以通过超低原子的现有实验技术实现。它概括了磁光法拉第效应的关键概念,以使超速原子物理学开辟了一种新的量子模拟和探索磁化法拉第效应和相关吸引人的物理学的新方法。

We propose an arresting scheme for emulating the famous Faraday effect in ultracold atomic gases. Inspired by the similarities between the light field and bosonic atoms, we represent the light propagation in medium by the atomic transport in accompany of the laser-atom interaction. An artificial magneto-optic Faraday effect is readily signaled by the spin imbalance of atoms, with the setup of laser fields offering a high controllability for quantum manipulation. The present scheme is really feasible and can be realized with existing experimental techniques of ultracold atoms. It generalizes the crucial concept of the magneto-optic Faraday effect to ultracold atomic physics, and opens a new way of quantum emulating and exploring the magneto-optic Faraday effect and associated intriguing physics.

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