宏观距离上的超表面量子真空效应(演示记录)

P. Jha, X. Ni, Chihhui Wu, Y. Wang, Xiang Zhang
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引用次数: 0

摘要

量子真空工程是一个活跃的研究领域。本文利用超表面(亚波长尺度纳米天线的二维阵列)领域的最新进展,在距离超表面一定宏观距离的量子发射极附近构建了各向异性量子真空(AQV)。这种AQV可以诱导几个原子跃迁之间的量子干涉,即使与衰变通道对应的跃迁偶极矩是正交的。近年来,很少有利用超材料来设计反作用力的理论建议。所有这些在近场(距离表面几十纳米)工作的方法,都受到在这些距离捕获原子、表面相互作用(如淬火、卡西米尔力等)的困扰。因此,构造宏观距离上的反作用是关键。我们利用超表面的偏振相关响应来设计原子对自身自发发射的反向作用。我们发现量子发射极的衰减速率具有很强的各向异性,这是AQV的一种表现。在宏观距离上设计光物质相互作用为量子发射体之间的远程相互作用开辟了新的可能性,用于量子信息处理、自旋光学/自旋电子学等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metasurface-enabled quantum vacuum effects over macroscopic distances (Presentation Recording)
Quantum vacuum engineering is an active field of research. Here we use recent advances in the field of metasurface (2D-array of sub-wavelength scale nano-antennas) to construct an anisotropic quantum vacuum (AQV) in the vicinity of a quantum emitter located at some macroscopic distance from the metasurface. Such AQV can induce quantum interference among several atomic transitions, even when the transition dipole moment corresponding to the decay channels are orthogonal. Recently, there have been few theoretical proposal to use metamaterials to engineer the back-action. All these approaches, which works in the near field (few tens of nanometers from the surface), suffers from trapping an atom at these distance, surface interactions like quenching, Casimir force etc. Hence it’s pivotal to construct the back-action over macroscopic distance. We harness the polarization dependent response of a metasurface to engineer the back-action of the spontaneous emission from the atom to itself. We show strong anisotropy in the decay rate of a quantum emitter which is a manifestation of AQV. Engineering light-matter interaction over macroscopic distances opens new possibilities for long-range interaction between quantum emitters for quantum information processing, spin-optics/spintronics etc.
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