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Parity-Time Symmetry Breaking in Coupled Nanobeam Cavities

机译:耦合纳米束腔中奇偶时间对称性的破坏

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摘要

The concept of parity-time symmetry (PT symmetry) originates from the canonical quantum mechanics and has become a hot topic recently. As a versatile platform to investigate the intriguing concept, both theoretical and experimental works in optics have been implemented. In this paper, the PT symmetry breaking phenomenon is investigated in a coupled nanobeam cavity system. An exceptional point is observed during the tuning of the gain/loss level and the coupling strength of the closely placed nanobeam pair. Unidirectional light propagation is investigated, as well as enhanced sensitivity of single particle detection in the vicinity of the exceptional point. The proposed system is easy to be integrated with photonic integrated circuits and can be strongly coupled to optical waveguides.
机译:奇偶时间对称性(PT symmetry)的概念起源于规范的量子力学,并成为最近的热门话题。作为研究引人入胜的概念的通用平台,光学方面的理论和实验工作均已实施。本文在耦合纳米束腔系统中研究了PT对称断裂现象。在增益/损耗水平和紧密放置的纳米束对的耦合强度调整期间观察到一个例外点。研究了单向光传播,以及在异常点附近提高了单粒子检测的灵敏度。所提出的系统易于与光子集成电路集成,并且可以牢固地耦合到光波导。

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