基于非线性半导体光放大器效应的全光开关逻辑门

A. Rashed, A. Mohamed, Mohamed S. F. Tabbour, N. Saad
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引用次数: 0

摘要

本文研究了误码率大、质量因数低的接收机的数据访问问题。由于这个问题,信息在接收端得到的不准确,数据应该具有高质量因子和低误码率,以便在使用门时在接收端简单识别。利用半导体光放大器(SOA)的非线性特性来完成基于布尔变量的数学工作,其中hand, NAND和OR门可能用于支持布尔函数。通过将这些门混合在一起,可以实现任何布尔函数,并利用它们进行光信号处理。利用眼图分析仪测量质量因子和误码率,利用Optiwave仿真程序中的示波器可视化器对输出位的状态进行测量。这些模型可用于波长转换、报头识别、奇偶校验、二进制相加、报文报头修改、模式匹配编码和加密以及高速高品质因数的数据加密。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
All Optical Switching Logic Gates Based on Nonlinear Semiconductor Optical Amplifiers Effects
This paper studies the problem of data access at the receiver withlarge bit error rate and low quality factor. Due to this issue theinformation got inaccurately at the receiver side, the data shouldhave high quality factor and low bit error rate to be simple ofidentification at the receiver when using the gates. The nonlinearproperties of the semiconductor optical amplifier (SOA) are utilizedto accomplish the Boolean variable based math work, in whichAND, NAND, and OR gates potentially used to endorse theBoolean function. Through blend this gates together any Booleanfunction can be accomplished and utilized to perform optical signalprocessing. The quality factor and BER are measured by utilizingthe eye diagram analyzer, the state of the output bit and alsoshaped by the oscilloscope visualizer in Optiwave simulationprogram. These models can be used for wavelength converter,header recognition, parity checking, binary addition, packet-headermodification, encoding and encryption with pattern matching, anddata encryption with high speed and high quality factor.
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