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- W2277197639 abstract "This chapter presents examples for the application of numerical analysis techniques in the amplifier design, concentrating on three different main aspects of amplifier performances—power efficiency, gain engineering, and transient—for three different types of optical amplifiers (erbium-doped fiber amplifier (EDFA), Raman, and transient thulium-doped fiber amplifier (TDFA)). Different numerical analysis techniques, suitable for each subject of key interest have been used either to gain useful insights, or to address important practical applications, which otherwise are difficult to approach with experimental techniques. With the help of a powerful numerical tool, it was possible to design a highly efficient EDF structure by applying the concept learned from the numerical analysis of the pump detuning method. Results showed that a properly designed, structurally detuned EDF could increase the PCE of L-band EDFAs by more than 58.5% when compared with the PCE of a conventional one using a C-band EDF, with a negligible increase in the noise figure (NF). The fiber Raman amplifier (FRA) has become an indispensable technology with its distinctive advantages, such as flexible gain bandwidth and intrinsically lower noise characteristics. To enable the optimal design of Raman amplifier/amplified transmission systems, various approaches have been proposed for the efficient modeling of the Raman amplifier. This chapter introduces an alternative highly efficient modeling method for FRA analysis." @default.
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- W2277197639 date "2006-01-01" @default.
- W2277197639 modified "2023-09-23" @default.
- W2277197639 title "Application of Numerical Analysis Techniques for the Optimization of Wideband Amplifier Performances" @default.
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- W2277197639 doi "https://doi.org/10.1016/b978-012088481-0/50011-5" @default.
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