Comparative study of single pump all optical fiber amplifiers (POAs) with ultra wide band and high gain fiber optic parametric amplifiers in highly nonlinear fibers

Q3 Engineering Journal of Optical Communications Pub Date : 2024-03-15 DOI:10.1515/joc-2024-0022
Anitha Gopalan, Judy Simon, Thoti Hemalatha, V. N. Mandhala, Nalini Neelamegam, Binu Sukumar, Faten Kamel Madian
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Abstract

This paper has clarified comparative study of single pump all optical fiber amplifiers with ultrawide band and high gain fiber optic parametric amplifiers in highly nonlinear fibers. Different amplifiers gain is demonstrated versus system distance for different light amplifiers in highly nonlinear fiber channel. As well as amplifier gain is clarified against system distance for different light amplifiers in DCF, DSF and NZDSF fiber channel. The mechanism of generation of single idler signal is studied based on single signal and pump signal. Moreover the mechanism of generation of single idler signal is analyzed and investigated clearly based on signal and two pump signals. Amplifier bandwidth is demonstrated against system distance for different fiber channel types in the presence of POA amplifiers based on 100 mW, 300 mW and 500 mW pumping power. The map of the signal losses is discussed and clarified versus wavelength band in the presence of all amplification techniques. Light signal per noise ratio and bit error rates are demonstrated against system distance for different fiber channel types in the presence of POA amplifiers based on 100 mW, 300 mW and 500 mW pumping power. POA is more suitable for the operation in HNLF fiber channel in compared to other proposed fiber communication channels. All optical amplifiers operation performance gain efficiency is compared together in different fiber channel media. The system can be employed with POAs for the fiber reach up to 100 km distance with a suitable amplifier gain and bandwidth. An important criteria for any amplifier is its gain and bandwidth for the compensation of the system loss and dispersion together. The optimum suitable pumping power is clarified for upgrade the system amplifier performance signature.
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高度非线性光纤中的单泵浦全光纤放大器(POA)与超宽带和高增益光纤参量放大器的比较研究
本文阐明了高度非线性光纤中单泵浦全光纤放大器与超宽带高增益光纤参量放大器的比较研究。在高度非线性光纤通道中,不同光放大器的增益与系统距离的关系得到了证实。此外,还阐明了 DCF、DSF 和 NZDSF 光纤通道中不同光放大器的放大器增益与系统距离的关系。基于单信号和泵浦信号,研究了单惰性信号的产生机制。此外,还根据信号和两个泵浦信号对单惰性信号的产生机理进行了清晰的分析和研究。在 100 mW、300 mW 和 500 mW 泵浦功率的 POA 放大器存在的情况下,针对不同光纤通道类型的系统距离,演示了放大器带宽。在采用所有放大技术的情况下,对信号损耗图进行了讨论,并明确了其与波长带的关系。在使用基于 100 mW、300 mW 和 500 mW 抽运功率的 POA 放大器时,针对不同光纤通道类型的系统距离,展示了光信号/噪声比和误码率。与其他拟议的光纤通信信道相比,POA 更适合在 HNLF 光纤信道中运行。所有光放大器在不同光纤通道介质中的运行性能增益效率都进行了比较。在合适的放大器增益和带宽条件下,该系统可使用 POA 实现长达 100 千米的光纤传输距离。任何放大器的一个重要标准是其增益和带宽,以同时补偿系统损耗和色散。为提升系统放大器的性能特征,明确了最佳的合适泵浦功率。
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来源期刊
Journal of Optical Communications
Journal of Optical Communications Engineering-Electrical and Electronic Engineering
CiteScore
2.90
自引率
0.00%
发文量
86
期刊介绍: This is the journal for all scientists working in optical communications. Journal of Optical Communications was the first international publication covering all fields of optical communications with guided waves. It is the aim of the journal to serve all scientists engaged in optical communications as a comprehensive journal tailored to their needs and as a forum for their publications. The journal focuses on the main fields in optical communications
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