Paper
2 May 1994 Model of an inhomogeneously pumped semiconductor optical amplifier operating to produce wavelength conversion from 1.3um-1.5um
Robert Noyes, Jayanta Sarma, I. Middlemast
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Abstract
A comprehensive, time dependent model of a semiconductor laser/amplifier is applied to such a device, inhomogeneously pumped, operating near Fabry-Perot resonance to produce wavelength conversion. The model includes spontaneous emission as a function of wavelength and carrier density, with photon density and carrier density functions of cavity length. Results indicate theoretical operating range for signal wavelengths and powers and comparison is made with experimentally obtained data.
© (1994) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Robert Noyes, Jayanta Sarma, and I. Middlemast "Model of an inhomogeneously pumped semiconductor optical amplifier operating to produce wavelength conversion from 1.3um-1.5um", Proc. SPIE 2150, Design, Simulation, and Fabrication of Optoelectronic Devices and Circuits, (2 May 1994); https://doi.org/10.1117/12.175014
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KEYWORDS
Chromium

Modulation

Absorption

Instrument modeling

Semiconductor lasers

Signal processing

Refractive index

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