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Coupled Photonic Crystal Nanocavities as a Tool to Tailor and Control Photon Emission

机译:耦合光子晶体纳米腔作为定制和控制光子发射的工具

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摘要

In this review, we report on the design, fabrication, and characterization of photonic crystal arrays, made of two and three coupled nanocavities. The properties of the cavity modes depend directly on the shape of the nanocavities and on their geometrical arrangement. A non-negligible role is also played by the possible disorder because of the fabrication processes. The experimental results on the spatial distribution of the cavity modes and their physical characteristics, like polarization and parity, are described and compared with the numerical simulations. Moreover, an innovative approach to deterministically couple the single emitters to the cavity modes is described. The possibility to image the mode spatial distribution, in single and coupled nanocavities, combined with the control of the emitter spatial position allows for a deterministic approach for the study of cavity quantum electrodynamics phenomena and for the development of new photonic-based applications.
机译:在这篇综述中,我们报告了由两个和三个耦合纳米腔构成的光子晶体阵列的设计,制造和表征。腔模的性质直接取决于纳米腔的形状及其几何排列。由于制造工艺的原因,可能的失调也起着不可忽视的作用。描述了关于腔模的空间分布及其物理特性(如极化和奇偶性)的实验结果,并与数值模拟进行了比较。此外,描述了一种确定性地将单个发射器耦合到腔模的创新方法。在单个和耦合的纳米腔中成像模式空间分布的可能性,以及对发射极空间位置的控制,为确定性方法研究腔体量子电动力学现象和开发新的基于光子的应用提供了可能。

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