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A novel all-optical dynamic frequency contention detection circuit using four-wave mixing in carrier Reservoir-SOA at 120 Gb/s

Publication Type : Journal Article

Publisher : Elsevier BV

Source : Optics Communications

Url : https://doi.org/10.1016/j.optcom.2025.131919

Keywords : Carrier reservoir semiconductor optical amplifier, Multiplexer, Contention, Gain saturation, Four wave mixing (FWM), Quality factor

Campus : Faridabad

School : School of Artificial Intelligence

Year : 2025

Abstract : This paper introduces a novel all-optical contention detection circuit utilizing a carrier reservoir semiconductor optical amplifier (CR-SOA) to achieve efficient four-wave mixing (FWM) at 120 Gb/s. Unlike traditional SOAs, which are limited by slow carrier recovery, CR-SOAs leverage a carrier reservoir for rapid gain and phase recovery, making them suitable for high-speed applications. The proposed circuit detects contention between data streams at different wavelengths using only two input signals, eliminating the need for an external pump signal. Four-wave mixing (FWM) in CR-SOA has been employed for detecting contention at different wavelengths. This simplification is especially beneficial for dense wavelength division multiplexing (DWDM) systems, where adding pump signals can complicate integration. Unlike other contention detection circuits that use multiple SOAs, the proposed circuit employs a single CR-SOA, thereby eliminating distortions caused by cascading nonlinear elements. Performance analysis is conducted by varying one wavelength while keeping the other constant to reflect real-world contention scenarios. Additionally, this study examines how the quality factor of the contention detection circuit varies with the frequency difference between the original signal and the contending signal, providing a novel perspective on performance variation under dynamic frequency conditions. The results demonstrate the circuit's effectiveness across varying input power levels, data rates, and CR-SOA parameters, offering a streamlined and resource-efficient solution for contention detection.

Cite this Research Publication : Vipul Agarwal, Prakash Pareek, Lokendra Singh, Bukya Balaji, Ruth Ramya Kalangi, Sumit Gupta, A novel all-optical dynamic frequency contention detection circuit using four-wave mixing in carrier Reservoir-SOA at 120 Gb/s, Optics Communications, Elsevier BV, 2025, https://doi.org/10.1016/j.optcom.2025.131919

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