Photonic self-router made of semiconductor and liquid crystal

M. Saito, K. Yoshimura, K. Kanatani
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Abstract

A liquid crystal (LC) cell made of silicon (Si) electrodes was fabricated to achieve self-routing of optical signals. As optical pulses (1.06 µm wavelength) passed through the cell, they excited free carriers in the Si electrode, which triggered the voltage application to the LC layer. Consequently, the polarization direction of the succeeding pulses became perpendicular to that of the preceding pulses, and they were routed to different directions by a polarization beam splitter. Optical pulses or packets were self-routed to one of the output ports, as they passed through the cascaded LC cell.
由半导体和液晶制成的光子自路由器
为实现光信号的自路由,制作了一种硅电极液晶电池。当光脉冲(波长1.06µm)穿过电池时,它们激发了Si电极中的自由载流子,从而触发了对LC层的电压施加。因此,后续脉冲的偏振方向与前一个脉冲的偏振方向垂直,并通过偏振分束器将它们路由到不同的方向。光脉冲或包自路由到其中一个输出端口,因为他们通过级联LC单元。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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