299,24 €
332,49 €
-10% with code: EXTRA
Engineering Quantum Mechanics
Engineering Quantum Mechanics
299,24
332,49 €
  • We will send in 10–14 business days.
There has been growing interest in the model of semiconductor lasers with non-Markovian relaxation. Introducing senior and graduate students and research scientists to quantum mechanics concepts, which are becoming an essential tool in modern engineering, Engineering Quantum Mechanics develops a non-Markovian model for the optical gain of semiconductor, taking into account the rigorous electronic band-structure and the non-Markovian relaxation using the quantum statistical reduced-density opera…
  • Publisher:
  • ISBN-10: 0470107634
  • ISBN-13: 9780470107638
  • Format: 16.2 x 23.7 x 2.2 cm, hardcover
  • Language: English
  • SAVE -10% with code: EXTRA

Engineering Quantum Mechanics (e-book) (used book) | Ahn | bookbook.eu

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There has been growing interest in the model of semiconductor lasers with non-Markovian relaxation. Introducing senior and graduate students and research scientists to quantum mechanics concepts, which are becoming an essential tool in modern engineering, Engineering Quantum Mechanics develops a non-Markovian model for the optical gain of semiconductor, 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 are provided for band-structures of zinc-blende and wurtzite quantum wells.

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  • Author: Ahn
  • Publisher:
  • ISBN-10: 0470107634
  • ISBN-13: 9780470107638
  • Format: 16.2 x 23.7 x 2.2 cm, hardcover
  • Language: English English

There has been growing interest in the model of semiconductor lasers with non-Markovian relaxation. Introducing senior and graduate students and research scientists to quantum mechanics concepts, which are becoming an essential tool in modern engineering, Engineering Quantum Mechanics develops a non-Markovian model for the optical gain of semiconductor, 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 are provided for band-structures of zinc-blende and wurtzite quantum wells.

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