Simulation of switchers for CNOT-gates based on optical waveguide interaction with coupled mode theory

A. A. Lytaev, I. Popov
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引用次数: 0

Abstract

The paper is devoted to simulation of interactions in the system of two symmetrical slab optical waveguides, that guide exactly two guided modes with the aim to use the directional coupler as a switcher for CNOT gate in the waveguide model of quantum-like computations. The coupling mode theory is used to solve the system of Maxwell equations. The asymptotic analysis is applied to simplify the system of differential equations, so an approximate analytic solution can be found. The solution obtained is used for the quick directional coupler parameters adjusting algorithm, so the power exchange in the system occurs as that of correctly working CNOT-gate switcher. Moreover, the finite difference method is used to solve the stricter system of equations, that additionally takes into account the process of power exchange between different order guided modes, so the computational error of the device can be estimated. It was obtained, that the possible size of the device may not exceed 1 mm in the largest dimension, while the computational error does not exceed 3%.
基于光波导耦合模式理论的cno -栅极开关仿真
本文对精确引导两个波导的对称平板光波导系统中的相互作用进行了仿真,目的是在类量子计算的波导模型中利用定向耦合器作为CNOT门的开关器。耦合模式理论用于求解麦克斯韦方程组。应用渐近分析方法对微分方程组进行简化,得到近似解析解。将得到的解用于快速定向耦合器参数调整算法,使系统中的功率交换与正常工作的cno -栅极开关一样。此外,采用有限差分法求解更严格的方程组,该方程组考虑了不同阶导模之间的功率交换过程,从而可以估计装置的计算误差。计算结果表明,该装置的最大尺寸可能不超过1mm,计算误差不超过3%。
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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CiteScore
0.30
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