Title :
Quantitative study of exciton-exciton polarization interaction in a strongly coupled semiconductor quantum well microcavity
Author :
Rankumar, C. ; Svirko, Yu.P. ; Shimano, R. ; Kise, T. ; Kuwata-Gonokami, M.
Author_Institution :
Dept. of Appl. Phys., Tokyo Univ., Japan
fDate :
Aug. 30 1999-Sept. 3 1999
Abstract :
The nonlinear optical responses of a strongly coupled exciton-photon system in a semiconductor microcavity structure under weak excitation can be explained by a weak exciton-exciton interaction due to the nonideal bosonic (weakly interacting bosons) nature of the excitons. The exciton-exciton interaction leads to an attractive interaction between excitons with opposite spin, and a repulsive interaction between excitons with the same spin and a phase space filling. Earlier, we have reported the ratio of these interaction energies from the polarization-sensitive degenerate four-wave mixing on a strongly coupled GaAs quantum well (QW) microcavity under weak excitation density. In order to quantitatively determine the exciton-exciton polarization interaction energy, we have proposed a pump-probe nonlinear polarization rotation scheme. In the paper, we report the quantitative measurement of the exciton-exciton polarization interaction energy in the above mentioned system under strict weak excitation density using the pump-probe nonlinear polarization rotation (PR) technique. In the technique, the change of polarization state of a weak linearly polarized probe due to the anisotropy induced by a strong, circularly polarized pump is monitored in reflection geometry.
Keywords :
III-V semiconductors; cavity resonators; excitons; gallium arsenide; light polarisation; micro-optics; multiwave mixing; optical resonators; reflectivity; semiconductor quantum wells; GaAs; GaAs quantum well microcavity; anisotropy; attractive interaction; exciton-exciton interaction; exciton-exciton polarization interaction; exciton-exciton polarization interaction energy; excitons; nonideal bosonic nature; nonlinear optical responses; opposite spin; phase space filling; polarization state; polarization-sensitive degenerate four-wave mixing; pump-probe nonlinear polarization rotation scheme; pump-probe nonlinear polarization rotation technique; quantitative measurement; reflection geometry; repulsive interaction; semiconductor microcavity structure; strong circularly polarized pump; strongly coupled exciton-photon system; strongly coupled semiconductor quantum well microcavity; weak excitation; weak excitation density; weak exciton-exciton interaction; weak linearly polarized probe; weakly interacting bosons; Excitons; Filling; Four-wave mixing; Gallium arsenide; Microcavities; Nonlinear optics; Optical coupling; Optical mixing; Optical polarization; Optical pumping;
Conference_Titel :
Lasers and Electro-Optics, 1999. CLEO/Pacific Rim '99. The Pacific Rim Conference on
Conference_Location :
Seoul, South Korea
Print_ISBN :
0-7803-5661-6
DOI :
10.1109/CLEOPR.1999.814670