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All-optical transistor action with bistable switching in a photonic crystal cross-waveguide geometry

机译:光子晶体交叉波导中具有双稳态切换的全光晶体管作用

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We demonstrate all-optical switching action in a nonlinear photonic crystal cross-waveguide geometry with instantaneous Kerr nonlinearity, in which the transmission of a signal can be reversibly switched on and off by a control input. Our geometry accomplishes both spatial and spectral separation between the signal and the control in the nonlinear regime. The device occupies a small footprint of a few micrometers squared and requires only a few milliwatts of power at a 10-Gbit/s switching rate by use of Kerr nonlinearity in AlGaAs below half the electronic bandgap. We also show that the switching dynamics, as revealed by both coupled-mode theory and finite-difference time domain simulations, exhibits collective behavior that can be exploited to generate high-contrast logic levels and all-optical memory.
机译:我们演示了在具有瞬时Kerr非线性的非线性光子晶体交叉波导几何结构中的全光切换动作,其中信号的传输可以通过控制输入可逆地打开和关闭。我们的几何结构在非线性状态下实现了信号与控制之间的空间和频谱分离。该器件占用的空间很小,只有几平方微米,并且通过使用低于电子带隙一半的AlGaAs中的Kerr非线性技术,在10 Gb / s的开关速率下仅需要几毫瓦的功率。我们还表明,如耦合模式理论和时域有限差分仿真所揭示的那样,开关动力学表现出集体行为,可用来产生高对比度逻辑电平和全光存储器。

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