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Single-photon all-optical switching using coupled microring resonators

机译:使用耦合微环谐振器的单光子全光开关

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We study the nonlinear phase response of a microring resonator coupled to a bus waveguide and the use of this nonlinear phase shift to store information in the microring resonator and enhance the switching characteristics of a Mach-Zehnder interferometer (MZI). By introducing coupling between adjacent microring resonators, the switching characteristics of the MZI can be exponentially enhanced as a function of the number of microring resonators, when compared to the linear enhancement for uncoupled resonators. With only a few moderate-finesse microring resonators, the switching power can be reduced to attowatt level, allowing for photonic switching devices that operate at single-photon level in ordinary optical waveguides.
机译:我们研究耦合到总线波导的微环谐振器的非线性相位响应,以及利用这种非线性相移将信息存储在微环谐振器中并增强Mach-Zehnder干涉仪(MZI)的开关特性。与未耦合谐振器的线性增强相比,通过在相邻的微环谐振器之间引入耦合,MZI的开关特性可以根据微环谐振器的数量呈指数增加。仅使用几个中精细的微环谐振器,就可以将开关功率降低到atwatt级,从而使光子开关器件能够在普通光波导中以单光子级运行。

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