Calculation of linear and nonlinear intersubband optical absorptions in a quantum well model with an applied electric field
- 1 December 1987
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Journal of Quantum Electronics
- Vol. 23 (12) , 2196-2204
- https://doi.org/10.1109/jqe.1987.1073280
Abstract
Analytic forms of the linear and the third-order nonlinear optical intersubband absorption coefficients are obtained for general asymmetric quantum well systems using the density matrix formalism, taking into account the intrasubband relaxation. Based on this model, we calculate the electric field dependence of the linear and the third-order nonlinear intersubband optical absorption coefficients of a semiconductor quantum well. The energy of the peak optical intersubband absorption is around 100 meV (wavelength is 12.4 μm). Thus, electrooptical modulators and photodetectors in the infrared regime can be built based on the physical mechanisms discussed here. The contributors to the nonlinear absorption coefficient due to the electric field include 1) the matrix element variation and 2) the energy shifts. Numerical results are illustrated.Keywords
This publication has 20 references indexed in Scilit:
- Historical Reminiscences About Nonlinear Optical Talk MaterialsPublished by Institute of Electrical and Electronics Engineers (IEEE) ,1990
- New 10 μm infrared detector using intersubband absorption in resonant tunneling GaAlAs superlatticesApplied Physics Letters, 1987
- Observation of Stark shifts in quantum well intersubband transitionsApplied Physics Letters, 1987
- Exact calculations of quasibound states of an isolated quantum well with uniform electric field: Quantum-well stark resonancePhysical Review B, 1986
- Variational calculations of subbands in a quantum well with uniform electric field: Gram–Schmidt orthogonalization approachApplied Physics Letters, 1986
- Subbands and excitons in a quantum well in an electric fieldPhysical Review B, 1986
- Electric field dependence of optical absorption near the band gap of quantum-well structuresPhysical Review B, 1985
- Nonlinear susceptibility of nonsymmetric quantum systemsRadiophysics and Quantum Electronics, 1985
- Fast relaxing absorptive nonlinear refraction in superlatticesApplied Physics Letters, 1983
- Dynamic non-linear optical processes in semiconductorsAdvances in Physics, 1981