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Thermo-optical switch using coated microsphere resonators

机译:使用涂层微球谐振器的热光开关

摘要

An all-optical switch includes a microsphere optical resonator coated with a conjugated polymer. A signal light beam propagating along a first SPARROW waveguide defining a throughput channel is evanescently coupled into the resonant whispering gallery modes (WGM) of the microsphere, and out of the microsphere onto a second SPARROW waveguide defining a drop channel. A secondary switching light beam is used to heat the microsphere resonator, thereby shifting its resonant frequency so that it no longer overlaps with the signal beam frequency. Light coupling into the microsphere and onto the drop channel is thus eliminated, and the signal beam is switched from the drop channel to the throughput channel. The time constant for the WGM resonant frequency shifting was about 165 ms, indicating thermo-optic switching capabilities at speeds on the order of 100 microseconds for high-Q modes. Multiple frequencies or channels can be routed using a switch configuration with multiple microspheres and drop channels.
机译:全光开关包括涂有共轭聚合物的微球光学谐振器。沿着限定吞吐通道的第一SPARROW波导传播的信号光束van逝耦合到微球的共振回音壁模式(WGM),并从微球中射出到限定下降通道的第二SPARROW波导。次级开关光束用于加热微球谐振器,从而改变其谐振频率,使其不再与信号光束频率重叠。因此,消除了耦合到微球体和引入通道上的光,并且信号束从引入通道切换到通量通道。 WGM谐振频率偏移的时间常数约为165 ms,这表明对于高Q模式,热光开关功能的速度约为100微秒。可以使用具有多个微球和下降通道的开关配置来路由多个频率或通道。

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