使用带GaAlAs定向耦合器的t -触发器电路的高性能光学3位灰码计数器。

Applied optics Pub Date : 2025-09-01 DOI:10.1364/AO.563645
Ajay Yadav, Amit Prakash, Santosh Kumar, Ajay Kumar
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摘要

本文介绍了一种高性能光学3位灰码计数器的设计和性能分析,该计数器采用使用GaAlAs定向耦合器的电光调制。所开发的系统包括t型触发器和用于光学逻辑运算和状态转换的定向耦合器的混合。小型化布局设计利用电光概念以足够的效率调制信号,从而产生全光子同步计数器。使用基于k映射的布尔逻辑合成来生成系统中使用的触发器所需的条件,充分解释了结构的功能。建议的器件配置由具有3µm×3µm调制器的GaAlAs材料组成。装置的耦合长度(LC)设为LC=1cm。EODC通过诱导约Δn × 1×10-4的折射率位移(Δn),在900nm波长处实现最佳开关。执行光开关所需的电场大小约为3×104V/cm,转换成沿3 μ m通道放置在EODC电极上的10v电压。利用仿真结果,包括三维MATLAB仿真和计数器状态变化的时序仿真,建立了计数器的工作原理。本文全面分析了所提出的光学3位灰度码转换电路的消光比、对比度和调幅特性。这些发现已经获得了广泛的吸引力,由于其较低的电路复杂性和更快的电路设计相比,电路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-performance optical 3 bit Gray-code counter using T-flip-flop circuits with GaAlAs directional couplers.

This work presents the design and performance analysis of a high-performance optical 3 bit Gray-code counter that employs electro-optic modulation using GaAlAs directional couplers. The developed system comprises a mix of T-flip flops and directional couplers for optical logic operations and state transitions. The miniaturized layout design leverages the electro-optical concept to modulate signals with sufficient efficiency, resulting in an all-photonic synchronous counter. The functioning of the structure is fully explained using K-map-based Boolean logic synthesis to generate the required conditions for the flip flops used in the system. The suggested device configuration consists of GaAlAs material designed with a 3µm×3µm modulator. The coupling length (LC) of the device is set at LC=1cm. The EODC achieves optimal switching at a light wavelength of 900nm by inducing a refractive index shift (Δn) of approximately Δn≅1×10-4. The required electric field magnitude of approximately 3×104V/cm to perform optical switching is transformed into a voltage of 10 V placed across the electrodes of the EODC along the 3 µm channel. The counter operation is established using simulation results, including 3D MATLAB simulations and temporal simulations of counter state changes. This work presents a comprehensive analysis of the extinction ratio, contrast ratio, and amplitude modulation characteristics of the proposed optical 3 bit Gray-code converter circuit. These findings have gained wide appeal due to their low circuit complexity and faster circuit design compared to electrical circuits.

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