Articles you may be interested inAnalytical modeling and numerical simulation of P+-Hg0.69 Cd0.31Te/n-Hg0.78Cd0.22Te/CdZnTe heterojunction photodetector for a long-wavelength infrared free space optical communication systemThe optical constants of Hg x Cd 1Ϫx Te as a function of energy and composition x are modeled over a wide spectral range from 1.5 to 6 eV. The model employed represents an extension of Adachi's model and incorporates the adjustable broadening function rather than the conventional Lorentzian one. In this way, greater flexibility of the model is achieved, enabling us to obtain an excellent agreement with the experimental data. The relative rms errors obtained for all compositions are below 2.5% for the real part and below 6% for the imaginary part of the index of refraction. The lowest rms errors are obtained for xϭ0 ͑0.6% for the real part and 0.7% for the imaginary part of the index of refraction͒, and the highest for the xϭ0.91 ͑2.4% for the real part and 5.8% for the imaginary part͒.
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