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Design, fabrication, and characterization of a two-dimensional photonic-crystal symmetric Mach-Zehnder interferometer for optical integrated circuits

机译:用于光学集成电路的二维光子晶体对称马赫曾德尔干涉仪的设计,制造和表征

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We report on the design, fabrication, and optical characterization of a GaAs two-dimensional photonic-crystal-based symmetric Mach-Zehnder interferometer (PC-SMZ) aimed at all-optical switches in planar photonic integrated systems. The directional couplers that constitute the PC-SMZ interferometer prevent the occurrence of ring resonance which degrades the interference, and allow control pulses for the switching operation to be received. We show 50%- and 100%-power couplings from the transmission characteristics of the directional couplers, thus demonstrating their operation as 3-dB dividers in the PC-SMZ. We also show experimentally wavelength selectivity between signal and control pulses with a separation of ~7 nm. These results indicate that the structure is promising as an all-optical switch when a nonlinear material such as a quantum dot is introduced into both arms of the interferometer.
机译:我们报告了针对平面光子集成系统中的全光开关的基于GaAs二维光子晶体的对称Mach-Zehnder干涉仪(PC-SMZ)的设计,制造和光学特性。构成PC-SMZ干涉仪的定向耦合器可防止发生环形谐振,从而降低干扰,并允许接收用于切换操作的控制脉冲。我们从定向耦合器的传输特性中显示了50%和100%功率耦合,从而证明了它们在PC-SMZ中作为3 dB分频器的工作原理。我们还通过实验证明了信号脉冲与控制脉冲之间的波长选择性,其间隔约为〜7 nm。这些结果表明,当将诸如量子点之类的非线性材料引入干涉仪的两个臂中时,该结构有望成为一种全光开关。

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