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Magnetoluminescence properties of Hg1−xCdxTe epitaxial layers and superlattice structures grown by metalorganic molecular beam epitaxy
Authors:T. K. Tran  A. Parikh  S. D. Pearson  B. K. Wagner  R. G. Benz  R. N. Bicknell-Tassius  C. J. Summers  T. Kelz  J. W. Tomm  W. Hoerstel  P. Schäfer  U. Muller
Affiliation:1. Quantum Microstructures Laboratory, Georgia Tech Research Institute, 30332, Atlanta, GA
2. Institut für Physik, Humboldt-Universit?t zu Berlin, D-10099, Berlin, Germany
Abstract:We present a study of the electro-optical properties ofHg 1- xCdxTe epitaxial layers and Hg1-x CdxTe/CdTe (0.28 < x < 0.30) superlattice structures by x-ray diffraction, lateral transport and photo- and magneto-luminescence measurements. Systematic studies of the excitation intensity and magnetic field dependence of the photoluminescence revealed direct evidence of an excitonic contribution to the observed luminescence in Hg1- xCdxTe epitaxial layers. Similar investigations of the superlattice structures indicated that excitonic corrections were required to adequately fit the luminescence data. Optical gains of 80 cm−1 were obtained for an excitation intensity of 100 kW/cm2 indicating suitable electro-optical properties for making efficient mid-infrared laser diodes.
Keywords:HgCdTe  magnetoluminescence  MOMBE  superlattice structures
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