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Titlebook: Symmetry and Symmetry-Breaking in Semiconductors; Fine Structure of Ex Bernd Hönerlage,Ivan Pelant Book 2018 Springer Nature Switzerland AG

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0081-3869 ende- and for Wurtzite-type semiconductors.Gathers the group.This book discusses group theory investigations of zincblende and wurtzite semiconductors under symmetry-breaking conditions.  The text presents the group theory elements required to develop a multitude of symmetry-breaking problems, givin
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Invariant Expansion and Electron-Band Structure Effects in Wurtzite-Type Semiconductors,me parameter (as temperature or pressure) is varied, for instance CdS. Other important semiconductors crystallizing in wurtzite structure are GaN,InN and ZnO. It is, however, important to recall that the symmetry properties and the crystal structure of both systems are quite different, giving rise to their different physical properties.
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Introduction,sciplines might seem to be quite difficult, but one should keep in mind all the time that they have been developed in order to help us to make up proper experiments and to understand the replies we receive in the form of their results.
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Light-Matter Interaction and Exciton-Polaritons in Semiconductors,l be described below by harmonic plane waves. The electric- . and magnetic-polarization vectors . are special forms of electric field . and magnetic induction vectors . whose evolution in space and time is governed by Maxwell’s equations.
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Book 2018group theory elements required to develop a multitude of symmetry-breaking problems, giving scientists a fast track to bypass the need for recalculating electronic states. The text is not only a valuable resource for speeding up calculations but also illustrates the construction of effective Hamilto
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Exciton Ground State in Zincblende-Type Semiconductors, current can flow. The sample can be polarized by the field but no free electric charges can move in the material. This situation characterizes the crystal-ground state whose energy and charge distribution is supposed to be known.
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Introduction,w symmetry of the crystal lattice and its breaking due to various external and internal perturbations are reflected in the physical (predominantly optical) properties of semiconductors. The level of presentation throughout the book is based on matrix formulation of quantum mechanics, on at least par
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Pseudo-Spin Development of the Exciton Ground State in Zincblende-Type Semiconductors,l to describe electronic excitations in semiconductors. The development procedure becomes, however, quite tedious and inefficient if a large basis of electron states is considered when describing a system. On the contrary, this technique is interesting if only a couple of almost degenerate states, w
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