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Exciton-induced enhancement of optical waveguide confinement in (Zn,Cd)(Se,S) quantum well laser heterostructures

✍ Scribed by Zh.I. Alferov; S.V. Ivanov; P.S. Kop'ev; A.V. Lebedev; N.N. Ledentsov; M.V. Maximov; I.V. Sedova; T.V. Shubina; A.A. Toropov


Publisher
Elsevier Science
Year
1994
Tongue
English
Weight
166 KB
Volume
15
Category
Article
ISSN
0749-6036

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✦ Synopsis


Room-temperature waveguide properties have been studied experimentally in (\mathrm{ZnSe}) based multiple-quantum-well laser structures. The spectra of waveguide transmission show distinct spectral features associated witb heavy- and light-hole quantum well excitons. Refractive index dispersion in the multiple-quantum-well region is derived from interference spectra measured in short waveguide samples. The refractive index increases with approaching the exciton resonances, resulting in perfect confinement and low losses of the fundamental TE waveguide mode in a narrow spectral region below the heavyhole exciton resonance energy. The spectra of laser generation have been measured under the conditions of optical pumping, showing the position of the lasing line to correlate with the spectral region of the waveguide transparency.