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Photonic molecules and sensors based on coupling between whispering gallery modes in microspheres

机译:基于微球回音壁模式之间耦合的光子分子和传感器

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Based on analogy between quantum mechanics and the classical electrodynamics, we sorted dielectric microspheres with almost identical positions of their whispering gallery mode (WGM) resonances as photonic atoms. Such microspheres were assembled in a wide range of structures including linear chains and planar photonic molecules. We studied WGM hybridization effects in such structures using side coupling by tapered microfibers as well as finite difference time domain modeling. We demonstrated potential sensing functionality as well as new ways of controlling WGM coupling constants in such molecules. Excellent agreement was found between measured and calculated fiber-transmission spectra for different molecules.
机译:基于量子力学和经典电动力学之间的类比,我们对电介质微球的耳语画廊模式(WGM)共振的几乎相同位置与光子原子进行了排序。这样的微球以各种结构组装,包括线性链和平面光子分子。我们利用锥形微纤维的侧向耦合以及有限时域时域模型研究了这种结构中的WGM杂交效应。我们展示了潜在的传感功能以及控制此类分子中WGM偶联常数的新方法。在不同分子的测量和计算的纤维透射光谱之间发现了极好的一致性。

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