Initial Characterization of an Electrooptic Grating Multiplier

C. Verber, R. Kenan, J. Busch
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Abstract

We have suggested a variety of planar integrated optical matrix-vector and matrix-matrix(1) multipliers based upon the successive diffraction of an optical beam to produce an analog intensity which is proportional to the product of the two diffraction efficiencies. The active elements employed in these devices are pairs of cascaded electrooptic grating modulators. In particular the so-called "herringbone" configuration, in which two modulators share a common spine, is a particularly compact and self-aligned structure. We report the first data characterizing such a structure and show how, on the basis of this data, the electrode design can be improved to reduce crosstalk and to improve dynamic range. We then indicate how the improved herringbone electrode can be used in a matrix-vector multiplier employing the engagement architecture(2).
电光光栅倍增器的初始特性
我们已经提出了各种平面集成光学矩阵-矢量和矩阵-矩阵(1)乘法器的基础上,一个光束的连续衍射产生一个模拟强度,这是成正比的乘积的两个衍射效率。在这些装置中使用的有源元件是一对级联的电光光栅调制器。特别是所谓的“人字形”结构,其中两个调制器共享一个共同的脊柱,是一种特别紧凑和自对齐的结构。我们报告了表征这种结构的第一个数据,并展示了如何在此数据的基础上改进电极设计以减少串扰和提高动态范围。然后,我们指出改进的人字形电极如何用于采用接合结构的矩阵向量乘法器(2)。
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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