首页> 外国专利> Reconfigurable nonlinear frequency conversion waveguide chip based on Mach-Zehnder interferometer coupled microring

Reconfigurable nonlinear frequency conversion waveguide chip based on Mach-Zehnder interferometer coupled microring

机译:基于Mach-Zehnder干涉仪耦合微管的可重新配置的非线性频率转换波导芯片

摘要

Reconfigurable nonlinear frequency conversion waveguide chip based on Mach-Zehnder interferometer coupled micro-ring, the method is based on the integration of waveguide components of phase-adjustable Mach-Zehnder interferometers (MZI) and micro-ring resonators. The chip is illustrated by FIG. 1. The MZI couples light and photons into and output of the micro-ring resonator and controls the micorings' quality factor thus optimize the nonlinear frequency conversion processes inside the ring by the phase-modulator inside the MZI. The micro-ring resonator enables the nonlinear optical generation of new frequency light beams and quantum light sources based on the second-order or third-order nonlinear optical process. Other optical waveguide components in region I and III of FIG. 1 are linear optical circuits for power splitting of pump beams and post-process of generated light beams or photons.
机译:该方法基于Mach-Zehnder干涉仪耦合微环的可重新配置的非线性变频波导芯片基于相位调节马赫 - Zehnder干涉仪(MZI)和微环谐振器的波导部件的积分。 芯片由图1示出。 1 。 MZI将光和光子耦合到微环谐振器中并输出微环谐振器,并控制MICORINGS的质量因子,从而优化MZI内的相位调制器的环内的非线性频率转换过程。 微环谐振器使得基于二阶或三阶非线性光学过程的新频率光束和量子光源的非线性光学产生。 图1的区域I和III中的其他光波导组分。 1 是用于泵浦梁的功率分裂的线性光学电路和产生的光束或光子的后处理。

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