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PHOTOREFRACTIVE HALF-ADDER - BEAM-FANNING FOR OPTICAL GENERATION OF SUM AND CARRY

机译:光折射半添加物-用于产生和和光的光束成束

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摘要

Optical implementation of an adder of arithmetic units that processes binary numbers is outlined. Dynamic range compression using biasing illumination in beam-fanning geometry as observed in a photorefractive BaTiO3:Fe crystal forms the underlying principle of operation. By proper choice of polarization for two input signals, XOR and AND operations are realized. These two operations are essentially analogous to SUM and CARRY generation for binary addition. By providing shift (only in case of CARRY) and feedback, experimental results for half-adder are obtained. In addition, the technique forms a very simple way of implementing 'original carries' as required for full-adder. The geometry proposed is simple, energy-efficient and can be easily extended to multi-wavelength operations thus achieving spectral parallelism in optical domain. [References: 39]
机译:概述了处理二进制数的算术单元加法器的光学实现。在光折变BaTiO3:Fe晶体中观察到的在束扇形几何结构中使用偏光照明进行的动态范围压缩形成了基本的工作原理。通过为两个输入信号正确选择极化,可以实现“异或”和“与”运算。这两个操作基本上类似于SUM和CARRY生成二进制加法。通过提供移位(仅在CARRY情况下)和反馈,可以获得半加法器的实验结果。另外,该技术构成了实现全加器所需的“原始进位”的非常简单的方法。所提出的几何结构简单,高效节能,并且可以轻松扩展到多波长操作,从而在光学领域实现光谱平行度。 [参考:39]

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