DocumentCode :
1600447
Title :
Microscopic theory for interband and intersubband optical responses of quantum well laser media
Author :
Pereira, Mauro F. ; Healy, Sorcha B. ; O´Reilly, Eoin P.
Author_Institution :
NMRC, Univ. Coll. Cork, Ireland
fYear :
2004
Firstpage :
5
Lastpage :
6
Abstract :
This work analyzes the influence of Coulomb effects with increasing degree of complexity, starting with the Hartree-Fock limit, and evolving to the screened Hartree-Fock case and further on to beyond Hartree-Fock corrections, including non-diagonal dephasing contributions to both interband and intersubband transitions. Electron-electron, hole-hole and electron-hole transitions, correlation and scattering mechanisms are systematically included in our many body Greens functions formalism that consistently includes the nonparabolic electron and hole dispersion relations as well as independent transition dipole elements obtained from a rigorous solution of an 8 × 8 k.p Hamiltonian. The carrier-induced absorption/gain coefficient and refractive index change are directly calculated from the imaginary, χ" and real, χ\´ parts of the optical susceptibility function.
Keywords :
Green´s function methods; HF calculations; absorption coefficients; dispersion relations; k.p calculations; laser theory; optical susceptibility; quantum well lasers; refractive index; semiconductor quantum wells; Coulomb effects; Hartree-Fock corrections; Hartree-Fock limit; carrier-induced absorption coefficient; electron-electron transitions; electron-hole transitions; gain coefficient; hole dispersion relations; hole-hole transitions; independent transition dipole elements; interband optical response; interband transitions; intersubband optical response; intersubband transitions; k.p Hamiltonian; many body Greens functions; microscopic theory; nondiagonal dephasing; nonparabolic electron; optical correlation; optical susceptibility function; quantum well laser media; refractive index change; scattering mechanisms; screened Hartree-Fock case; Green function; Laser theory; Laser transitions; Optical microscopy; Optical refraction; Optical scattering; Optical variables control; Particle scattering; Quantum mechanics; Quantum well lasers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Numerical Simulation of Optoelectronic Devices, 2004. NUSOD '04. Proceedings of the 4th International Conference on
Print_ISBN :
0-7803-8530-6
Type :
conf
DOI :
10.1109/NUSOD.2004.1345083
Filename :
1345083
Link To Document :
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