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Titlebook: Electronic Structure of Semiconductor Heterojunctions; Giorgio Margaritondo Book 1988 Editoriale Jaca Book spa, Milano 1988 electron.elect

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Ge—GaAs(110) interface formation We show that these behaviors are consistent with the kinetic and thermodynamic properties of the atomic species. The valence band discontinuity is negligible over atomic dimensions, while for an abrupt interface (.. = 350°C) we measure Δ.. = 0.7±. eV. The photoemission changes character rapidly wit
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https://doi.org/10.1007/978-3-658-30127-9on effects, hopping conduction, and effective mass filtering are discussed. In the following section, experimental results on tunneling superlattice photoconductors based on effective mass filtering are presented. In the fifth section, negative differential resistance resulting from localization in
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https://doi.org/10.1007/978-3-663-07881-4 to those inferred for Schottky barriers, then the pinning interface states should set up a dipole sufficient to alter the band offsets; the interfacial band alignment should then be dominated by the alignment of the pinning states, rather than that of the bulk bands. The experimentally suggested la
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Electronic Structure of Semiconductor Heterojunctions
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Introductionin energy with respect to each other, when the materials are joined together to form a heterojunction?”. This deceivingly simple question has profound fundamental and technological implications. For over twenty-five years, a definite answer has been sought by experimentalists and theorists. We have
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