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多模腔量子电动力学中合成规范场的迈斯纳样效应

Meissner-like Effect for a Synthetic Gauge Field in Multimode Cavity QED.

作者信息

Ballantine Kyle E, Lev Benjamin L, Keeling Jonathan

机构信息

SUPA, School of Physics and Astronomy, University of St. Andrews, St. Andrews KY16 9SS, United Kingdom.

Departments of Physics and Applied Physics and Ginzton Laboratory, Stanford University, Stanford, California 94305, USA.

出版信息

Phys Rev Lett. 2017 Jan 27;118(4):045302. doi: 10.1103/PhysRevLett.118.045302.

Abstract

Previous realizations of synthetic gauge fields for ultracold atoms do not allow the spatial profile of the field to evolve freely. We propose a scheme which overcomes this restriction by using the light in a multimode cavity with many nearly degenerate transverse modes, in conjunction with Raman coupling, to realize an artificial magnetic field which acts on a Bose-Einstein condensate of neutral atoms. We describe the evolution of such a system and present the results of numerical simulations which show dynamical coupling between the effective field and the matter on which it acts. Crucially, the freedom of the spatial profile of the field is sufficient to realize a close analogue of the Meissner effect, where the magnetic field is expelled from the superfluid. This backaction of the atoms on the synthetic field distinguishes the Meissner-like effect described here from the Hess-Fairbank suppression of rotation in a neutral superfluid observed elsewhere.

摘要

先前实现的超冷原子合成规范场不允许场的空间分布自由演化。我们提出了一种方案,通过在具有许多近简并横向模式的多模腔中使用光,并结合拉曼耦合,来克服这一限制,以实现作用于中性原子玻色 - 爱因斯坦凝聚体的人工磁场。我们描述了这样一个系统的演化,并给出了数值模拟结果,这些结果表明有效场与其作用的物质之间存在动态耦合。至关重要的是,场的空间分布的自由度足以实现迈斯纳效应的紧密类似物,即磁场从超流体中被排斥。原子对合成场的这种反作用将此处描述的类迈斯纳效应与其他地方观察到的中性超流体中旋转的赫斯 - 费尔班克抑制区分开来。

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