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首页> 外文期刊>Journal of nonlinear optical physics & materials >Spatial routing with light-induced waveguides in uniaxial nematic liquid crystals
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Spatial routing with light-induced waveguides in uniaxial nematic liquid crystals

机译:单轴向列液晶中光波导的空间路由

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In reorientational soft-matter with uniaxial character, such as nematic liquid crystals (NLCs), self-confined beams into spatial optical solitons are graded-index waveguides subject to birefringent walkoff. We investigate a router to be realized in a planar cell with an inhomogeneous distribution of the optic axis. Based on the input beam position, the proposed demultiplexer can direct the soliton and the copolarized guided-wave signal( s) to various output ports, enhancing the transverse separation of the exit channels and therefore minimizing crosstalk. Both the soliton and the signal(s) maintain their phasefronts normal to launch and exit wavevectors, allowing for excellent coupling into output channels/fibers at the device exit.
机译:在具有单轴特性的方向性软物质(例如向列液晶(NLC))中,进入空间光学孤子的自束束是渐变折射率波导,容易受到双折射干扰。我们研究了在光轴不均匀分布的平面单元中要实现的路由器。根据输入光束的位置,所提出的多路分解器可以将孤子和同极化的导波信号导引到各个输出端口,从而增强了输出通道的横向分离,从而使串扰最小。孤子和信号都保持其法线相位垂直于发射和出射波矢量,从而可以在设备出口处出色地耦合到输出通道/光纤中。

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