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Titlebook: Optical Properties of Semiconductors; G. Martinez Book 1993 Springer Science+Business Media B.V. 1993 Semiconductor.magnetic field.optical

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ic model based on results from vehicular traffic theory, that applies to vehicles and pedestrians in urban, suburban and highway cellular systems. The model helps quantify various design tradeoffs. We conclude that microcells are unnecessary in urban environments if the pedestrian penetration is sma
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Book 1993 enhan­ ces some of them. For all these reasons, it appeared necessary to try to review in a global way what the optical investigation has brought today about the understanding of the physics of semiconductors. This volume collects the papers presented at the NATO Advanced study Inst i tut e on "Opt
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0168-132X nt to the fundamental physical properties. This is especially true in semiconductor physics for which, due to the intrinsic low screening of these materials, the optical response is quite rich. Their spectra reflect indeed as well electronic as spin or phonon transitions. This is also in the semicon
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Light Detectors,ective mass filters and superlattice avalanche photodiodes. Finally, new superlattice far infrared detectors using intersubband absorption and waveguide integrated with diode (using evanescent field absorption process) are reviewed. At last, the fabrication of such devices is explained.
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Book 1993fundamental physical properties. This is especially true in semiconductor physics for which, due to the intrinsic low screening of these materials, the optical response is quite rich. Their spectra reflect indeed as well electronic as spin or phonon transitions. This is also in the semiconductor fie
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Semiconductor Light Sources,ce parameters on the performance is studied and the improvement by using quantum well structures is demonstrated. An outlook towards advanced laser structures includes recent progress on electronically wavelength tunable laser diodes.
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