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用于大规模量子光学器件的耦合狭缝-波导腔。

Coupling slot-waveguide cavities for large-scale quantum optical devices.

作者信息

Su Chun-Hsu, Hiscocks Mark P, Gibson Brant C, Greentree Andrew D, Hollenberg Lloyd C L, Ladouceur François

机构信息

School of Physics, University of Melbourne, VIC, Australia.

出版信息

Opt Express. 2011 Mar 28;19(7):6354-65. doi: 10.1364/OE.19.006354.

Abstract

By offering effective modal volumes significantly less than a cubic wavelength, slot-waveguide cavities offer a new in-road into strong atom-photon coupling in the visible regime. Here we explore two-dimensional arrays of coupled slot cavities which underpin designs for novel quantum emulators and polaritonic quantum phase transition devices. Specifically, we investigate the lateral coupling characteristics of diamond-air and GaP-air slot waveguides using numerically-assisted coupled-mode theory, and the longitudinal coupling properties via distributed Bragg reflectors using mode-propagation simulations. We find that slot-waveguide cavities in the Fabry-Perot arrangement can be coupled and effectively treated with a tight-binding description, and are a suitable platform for realizing Jaynes-Cummings-Hubbard physics.

摘要

通过提供明显小于立方波长的有效模态体积,狭缝波导腔为在可见光范围内实现强原子 - 光子耦合开辟了一条新途径。在此,我们探索耦合狭缝腔的二维阵列,其为新型量子模拟器和极化子量子相变器件的设计奠定基础。具体而言,我们使用数值辅助耦合模理论研究金刚石 - 空气和磷化镓 - 空气狭缝波导的横向耦合特性,并通过模式传播模拟研究经由分布式布拉格反射器的纵向耦合特性。我们发现,法布里 - 珀罗结构中的狭缝波导腔可以耦合,并且可以用紧束缚描述有效地处理,是实现杰恩斯 - 卡明斯 - 哈伯德物理的合适平台。

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