Intersubband stimulated emission and optical gain by ‘‘phonon pumping’’ in quantum wires
Jean‐Pierre Leburton
Abstract
Jean‐Pierre Leburton
Abstract
We present an analysis of the optical gain for stimulated emission between subbands in quasione-dimensional structures. The population inversion is induced by a new pumping mechanism involving phonon absorption during transport in quantum wires. The population inversion threshold for far infrared stimulated emission is calculated in a generic GaAs quantum wires laser structure and shows a quite reasonable minimum value of Δn=3×105/cm at λ=100 μm. For longer wavelengths, free carrier absorption is the main limitation to stimulated emission.
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We present an analysis of the optical gain for stimulated emission between subbands in quasione-dimensional structures. The population inversion is induced by a new pumping mechanism involving phonon absorption during transport in quantum wires. The population inversion threshold for far infrared stimulated emission is calculated in a generic GaAs quantum wires laser structure and shows a quite reasonable minimum value of Δn=3×105/cm at λ=100 μm. For longer wavelengths, free carrier absorption is the main limitation to stimulated emission.
Key concepts: Population inversion, Stimulated emission, Phonon, Quantum well, Laser, Optical pumping, Absorption (acoustics), Wavelength