Quantum States and Scattering in Semiconductor Nanostructures

Nonfiction, Science & Nature, Technology, Electronics, Semiconductors, Science, Physics, Solid State Physics
Cover of the book Quantum States and Scattering in Semiconductor Nanostructures by Camille Ndebeka-Bandou, Francesca Carosella, Gérald Bastard, World Scientific Publishing Company
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Author: Camille Ndebeka-Bandou, Francesca Carosella, Gérald Bastard ISBN: 9781786343048
Publisher: World Scientific Publishing Company Publication: August 3, 2017
Imprint: WSPC (EUROPE) Language: English
Author: Camille Ndebeka-Bandou, Francesca Carosella, Gérald Bastard
ISBN: 9781786343048
Publisher: World Scientific Publishing Company
Publication: August 3, 2017
Imprint: WSPC (EUROPE)
Language: English

This book is an introduction to quantum states and of their scattering in semiconductor nanostructures. Written with exercises and detailed solutions, it is designed to enable readers to start modelling actual electron states and scattering in nanostructures. It first looks at practical aspects of quantum states and emphasises the variational and perturbation approaches. Following this there is analysis of quasi two-dimensional materials, including discussion of the eigenstates of nanostructures, scattering mechanisms and their numerical results.

Focussing on practical applications, this book moves away from standard discourse on theory and provides students of physics, nanotechnology and materials science with the opportunity to fully understand the electronic properties of nanostructures.

Headers: With more than 50 Exercises & Solutions (168 pages)
Quantum States and Scattering in Semiconductor Nanostructures

Quantum States and Scattering in Semiconductor Nanostructures

Quantum States and Scattering in Semiconductor Nanostructures

Quantum States and Scattering in Semiconductor Nanostructures

Quantum States and Scattering in Semiconductor Nanostructures

Quantum States and Scattering in Semiconductor Nanostructures

Contents:

  • Practical Quantum Mechanics:

    • Schrödinger Equation
    • Bound and Extended States
    • Approximate Methods
    • Landau Quantisation of Electron Motion in Ideal Semiconductor Bulks and Heterostructures
  • The Physics of Heterostructures:

    • Background on Heterostructures
    • Electrons States in Nanostructures
    • Beyond the Ideal World
    • Screening at the Semi-Classical Approximation
    • Results for Static Scatterers
    • Results for Electron-Phonon Interaction
    • Beyond the Born Approximation
  • Exercises

Readership: Students of physics, nanoscience and materials science, professionals working with nanomaterials, and researchers.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book is an introduction to quantum states and of their scattering in semiconductor nanostructures. Written with exercises and detailed solutions, it is designed to enable readers to start modelling actual electron states and scattering in nanostructures. It first looks at practical aspects of quantum states and emphasises the variational and perturbation approaches. Following this there is analysis of quasi two-dimensional materials, including discussion of the eigenstates of nanostructures, scattering mechanisms and their numerical results.

Focussing on practical applications, this book moves away from standard discourse on theory and provides students of physics, nanotechnology and materials science with the opportunity to fully understand the electronic properties of nanostructures.

Headers: With more than 50 Exercises & Solutions (168 pages)
Quantum States and Scattering in Semiconductor Nanostructures

Quantum States and Scattering in Semiconductor Nanostructures

Quantum States and Scattering in Semiconductor Nanostructures

Quantum States and Scattering in Semiconductor Nanostructures

Quantum States and Scattering in Semiconductor Nanostructures

Quantum States and Scattering in Semiconductor Nanostructures

Contents:

Readership: Students of physics, nanoscience and materials science, professionals working with nanomaterials, and researchers.

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