Photonic fan-out and local selectable inversion of the optical hysteresis shape

Saif A. Al Graiti, M. Maafa, Son Kim Pham, Drew Maywar
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Abstract

We demonstrate and elucidate the local selectable inversion of the hysteresis shape of a bistable optical signal after fan-out. This selectability is based on a hysteresis-shape transformation that yields a switching contrast over 20 dB in magnitude for both the inversion clockwise (CW) and the non-inversion counterclockwise (CCW) hysteresis shapes, while maintaining input-switching powers. This behavior leverages an initial signal whose bistability is manifested by its state of polarization; a generalized Malus' law elucidates how selection is possible by controlling the transmittivity hysteresis through each local polarizer. The concept is demonstrated using a Fabry-Perot semiconductor optical amplifier to produce the initial bistable polarization-rotating signal, followed by a 1X2 fan-out and the realization of all four hysteresis shapes at each location, independent of the other location. This fan-out and selectable inversion behavior is applicable to other nonlinear photonic systems and provides new functionality for parallel optical processing.
光子扇出和光滞形状的局部可选反转
我们展示并阐明了扇出后双稳态光信号磁滞形状的局部可选择反转。这种可选择性基于一种磁滞形状变换,在保持输入开关功率的同时,顺时针(CW)反转和逆时针(CCW)非反转磁滞形状的开关对比度均超过 20 dB。这种行为利用了初始信号的双稳态性,而初始信号的双稳态性是由其偏振状态表现出来的;一个广义的马鲁斯定律阐明了如何通过控制每个局部偏振器的透射率滞后来实现选择。我们使用法布里-珀罗半导体光放大器来演示这一概念,以产生初始双稳态偏振旋转信号,然后进行 1X2 扇出,并在每个位置实现所有四种磁滞形状,与其他位置无关。这种扇出和可选择的反转行为适用于其他非线性光子系统,并为并行光学处理提供了新的功能。
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