13 December 2022 Optical scheme of developing Hamming code-based error detection and correction using Toffoli gates with frequency encoded data
Manas Kumar Garai, Dhoumendra Mandal, Mrinal Kanti Mandal, Sisir Kumar Garai
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Abstract

Bit-error detection and correction is a very important part of a data communication network. In this article, we propose an optical approach to designing an error detection and correction circuit using Hamming code-based frequency encoded binary data and Toffoli gates. Here, the Toffoli gates are made of semiconductor optical amplifiers (SOAs) that work based on the nonlinear polarization rotation property. The characteristics of SOA, including very fast switching action (about 0.01 ns), low power consumption, frequency independent cross-polarization gain in the C-band, cascading property, etc., make the scheme attractive. The frequency encoded data-based proposed scheme will be effective for WDM communication networks. MATLAB simulation results testify to the feasibility of the proposed scheme.

© 2022 Society of Photo-Optical Instrumentation Engineers (SPIE)
Manas Kumar Garai, Dhoumendra Mandal, Mrinal Kanti Mandal, and Sisir Kumar Garai "Optical scheme of developing Hamming code-based error detection and correction using Toffoli gates with frequency encoded data," Optical Engineering 61(12), 126102 (13 December 2022). https://doi.org/10.1117/1.OE.61.12.126102
Received: 4 April 2022; Accepted: 28 November 2022; Published: 13 December 2022
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KEYWORDS
Error control coding

Computer programming

Signal attenuation

Binary data

Optical engineering

Polarization

Circuit switching

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