25 February 2023 Design and analysis of Tbps all-optical gray code converter using photonic crystal-semiconductor optical amplifier-Mach–Zehnder interferometric structure
Elizabeth Caroline, Margarat Michael, Mohamed Nizar, Vidhya Janakiraman
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Abstract

Future communication networks require the entire communication system to be all-optical to overcome the bandwidth constraints of electronics. All-optical devices play a vital role in supporting future networks, which demand a high speed of up to Tbps. An all-optical gray code converter operation was demonstrated numerically using a photonic crystal semiconductor optical amplifier (PhC-SOA) in a Mach–Zehnder interferometric (MZI) configuration at 1 Tbps for M-ary differential phase shift keying modulated binary and BCD inputs. The design achieved a very high extinction ratio of about 123.8 dB with a good quality factor value of about 45. The results show that PhC-SOA-based XOR and OR gates in the gray code converter design exhibits improved modulation features compared with traditional SOAs in our previous works.

© 2023 Society of Photo-Optical Instrumentation Engineers (SPIE)
Elizabeth Caroline, Margarat Michael, Mohamed Nizar, and Vidhya Janakiraman "Design and analysis of Tbps all-optical gray code converter using photonic crystal-semiconductor optical amplifier-Mach–Zehnder interferometric structure," Optical Engineering 62(2), 027105 (25 February 2023). https://doi.org/10.1117/1.OE.62.2.027105
Received: 22 August 2022; Accepted: 30 January 2023; Published: 25 February 2023
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CITATIONS
Cited by 2 scholarly publications.
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KEYWORDS
Design and modelling

Logic

Binary data

Logic devices

Optical engineering

Modulation

Photonic crystals

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