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Electromagnetically-induced transparency-like transmission characteristics of a waveguide coupled to a microsphere resonator

机译:耦合到微球谐振器的波导的电磁感应类似透明的传输特性

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The limitation of traditional microring mode resonance, the microsphere confocal cavity is the best candidate for a low loss and controllable linewidth. Based on the transform matrix method, we investigate the waveguide coupled to a microsphere whispering-gallery mode (WGM) system. We find that the confocal cavity mode iscompletely different from the traditional ring cavity mode. The confocal cavity mode is excited in asymmetrical dual microsphere systems, and the spectrum of asymmetrical dual microsphere systems appear as an electromagnetically induced transparency (EIT)-like profile, whereas the spectrum of symmetrical dual microsphere systems appears as Lorentz profile. The traditional ring cavity mode is excited in the symmetrical single microsphere system.
机译:由于传统的微环模式共振的局限性,微球共焦腔是低损耗和可控线宽的最佳选择。基于变换矩阵方法,我们研究了耦合到微球耳语画廊模式(WGM)系统的波导。我们发现共焦腔模式与传统的环形腔模式完全不同。共焦腔模在非对称双微球系统中被激发,非对称双微球系统的光谱以电磁感应透明(EIT)状分布出现,而对称双微球系统的光谱以洛伦兹分布出现。在对称的单个微球系统中激发了传统的环形腔模式。

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