Resonance optical spectroscopy of long-period quantum-well structures

被引:0
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作者
E. L. Ivchenko
V. P. Kochereshko
A. V. Platonov
D. R. Yakovlev
A. Waag
W. Ossau
G. Landwehr
机构
[1] Physikalisches Institut der Universität Würzburg,A. F. Ioffe Physicotechnical Institute
[2] Russian Academy of Sciences,undefined
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关键词
Reflectance Spectrum; Transfer Matrix; Interference Pattern; Transmission Coefficient; Light Reflectance;
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摘要
Theory of specular light reflection from long-period quantum-well structures taking into account the exciton contribution to dielectric polarization has been developed for an arbitrary relation between the background refractive index in the well, na, and barrier-material refractive index nb. General expressions for the optical reflection and transmission coefficients for a structure with N equidistant quantum wells are derived with the use of the Green’s function and transfer matrix methods. Normal and oblique light reflectance spectra from II-VI-based heterostructures were found to reveal a bright interference pattern caused by the difference between na and nb. A comparison of the theory with experiment has yielded the dispersion of na and nb within a broad wavelength range and the parameters of the quasi-two-dimensional heavyhole exciton (e1-hh1), namely, the resonant frequency and the radiative and nonradiative damping rates. Reflectance spectra from resonant Bragg and quasi-Bragg structures with real exciton parameters are calculated, and the effect on these spectra of the refractive-index difference and the deviation from the Bragg condition is analyzed.
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页码:1852 / 1858
页数:6
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