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Electro-optically induced tilted phase gratings in waveguides

机译:波导中的电光感应倾斜相位光栅

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摘要

A new design for an electro-optically induced tilted phase grating inside a waveguide is proposed. The electric field and the refractive-index distribution induced inside a waveguide by voltage applied to two systems of interdigitated electrodes that are shifted with respect to each other are calculated rigorously on the basis of an original technique. The model accounts for the arbitrary electrode shift distance d (0 less than or equal to d less than or equal to 2l), where l is the electrode spatial period. It is shown that the proper choice of the shift can minimize the structure's capacitance and consequently its time response. The refractive-index distributions are calculated for various schemes for application of electric potential and electrode position that demonstrate the possibility of switching the direction of the grating wave vector. It is shown how the concept can be use to build electro-optically controllable transmissive (long-period) and reflective (short-period) tilted gratings and couplers in both multilayered (transverse) and planar (lateral) configurations. (C) 2001 Optical Society of America. [References: 22]
机译:提出了一种波导内部电光倾斜相位光栅的新设计。在原始技术的基础上,严格地计算出由施加到相互偏移的两个叉指式电极系统上的电压在波导内部感应的电场和折射率分布。该模型说明了任意的电极移动距离d(0小于或等于d小于或等于2l),其中l是电极空间周期。结果表明,适当选择移位可以使结构的电容最小,从而使时间响应最小。对于各种施加电势和电极位置的方案,计算出了折射率分布,这些方案证明了切换光栅波矢量方向的可能性。展示了如何使用该概念构建多层(横向)和平面(横向)配置中的电光可控的透射(长周期)和反射(短周期)倾斜光栅和耦合器。 (C)2001年美国眼镜学会。 [参考:22]

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