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Optical Coupling of Double L7 Photonic Crystal Microcavities for Applications in Quantum Photonics

机译:双L7光子晶体微腔的光学耦合在Quantum Photonics中的应用

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Coupled photonic crystal microcavities have been considered when exploring platforms for quantum photonic effects like quantum-optical Josephson interferometers, single photon emitters and coupled-cavity single-photon emitters and many others. Arrays of photonic cavities are relevant structures for developing large-scale photonic integrated circuits, single mode coupled-cavity lasers and for investigating basic quantum electrodynamics phenomena due to the photon hopping between interacting nanoresonators. In this work we have measured the emission of two L7 microcavities when their separation is varied. We have found optical coupled modes more clearly defined at specific cavity separations. Finally, we have simulated the optical mode distribution of the coupled system using the GME method, finding a good agreement between experiment and theory.
机译:当探索量子光子效应等Quantum-Moption Josephse干涉仪,单光子发射器和耦合腔单光子发射器等耦合光子晶体微腔已经考虑了耦合的光子晶体微腔。光子腔阵列是用于开发大规模光子集成电路,单模耦合腔激光器的相关结构,以及用于研究由于相互作用纳米组之间的光子跳跃而研究基本量子电动力学现象。在这项工作中,当它们的分离变化时,我们已经测量了两个L7微腔的发射。我们发现在特定腔分离中更清楚地定义光学耦合模式。最后,我们已经使用GME方法模拟了耦合系统的光学模式分布,在实验与理论之间找到了良好的一致性。

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