Publication | Closed Access
Nonlinear Characteristics of Semiconductor Optical Amplifiers for Optical Switching Control Realization of Logic Gates
67
Citations
28
References
2019
Year
Optical MaterialsEngineeringOptical Transmission SystemOptical Wireless CommunicationOptical AmplifierOptical ComputingOptical AmplificationOptical PropertiesSemiconductor Optical AmplifiersOptical SwitchingLogic GatesOptical CommunicationOptical SystemsLow Quality FactorEye Diagram AnalyzerPhotonicsElectrical EngineeringComputer EngineeringNonlinear CharacteristicsSignal ProcessingQuality FactorOptoelectronicsOptical Logic Gate
Abstract This paper studies the problem of data access at the receiver with large bit error rate and low quality factor. Due to this issue the information got inaccurately at the receiver side, the data should have high quality factor and low bit error rate to be simple of identification at the receiver when using the gates. The nonlinear properties of the semiconductor optical amplifier are utilized to accomplish the Boolean variable based math work, in which AND, NAND, and OR gates potentially used to endorse the Boolean function. Through blend this gates together any Boolean function can be accomplished and utilized to perform optical signal processing. The quality factor and BER are measured by utilizing the eye diagram analyzer, the state of the output bit and also shaped by the oscilloscope visualizer in optiwave simulation program. These models can be used for wavelength converter, header recognition, parity checking, binary addition, packet-header modification, encoding and encryption with pattern matching, and data encryption with high speed and high quality factor.
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