Engineering quantum mechanics / Doyeol Ahn, Seoung-Hwan Park

Por: Ahn, DoyeolColaborador(es): Park, Seoung-HwanTipo de material: TextoTextoDetalles de publicación: Hoboken : John Wiley & Sons, 2011 Descripción: VIII, 306 p. ; 24 cmISBN: 978-0-470-10763-8Tema(s): Teoría cuánticaResumen: There has been growing interest in the model of semiconductor lasers with non-Markovian relaxation partially due to the dissatisfaction with the conventional model for the optical gain in predicting the correct gain spectrum and the thermodynamic relations. In this book, a non-Markovian model for the optical gain of semiconductor is developed, taking into account the rigorous electronic band-structure and the non-Markovian relaxation using the quantum statistical reduced-density operator formalism. Example programs based on Fortran 77 will also be provided for band-structures of zinc-blende and wurtzite quantum wells. Many-body effects are taken into account within the time-dependent Hartree-Fock equations. Various semiconductor lasers, including the strained-layer quantum-well lasers and wurtzite GaN blue-green quantum-well lasers, will be discussed.
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There has been growing interest in the model of semiconductor lasers with non-Markovian relaxation partially due to the dissatisfaction with the conventional model for the optical gain in predicting the correct gain spectrum and the thermodynamic relations. In this book, a non-Markovian model for the optical gain of semiconductor is developed, taking into account the rigorous electronic band-structure and the non-Markovian relaxation using the quantum statistical reduced-density operator formalism. Example programs based on Fortran 77 will also be provided for band-structures of zinc-blende and wurtzite quantum wells. Many-body effects are taken into account within the time-dependent Hartree-Fock equations. Various semiconductor lasers, including the strained-layer quantum-well lasers and wurtzite GaN blue-green quantum-well lasers, will be discussed.

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