Physics of Semiconductors and Nanostructures
Autor Jyoti Prasad Banerjee, Suranjana Banerjeeen Limba Engleză Hardback – 25 iun 2019
Key Features
- Presents basic concepts of quantum theory, solid state physics, semiconductors, and quantum nanostructures such as quantum well, quantum wire, quantum dot and superlattice
- In depth description of semiconductor heterojunctions, lattice strain and modulation doping technique
- Covers transport in nanostructures under an electric and magnetic field with the topics: quantized conductance, Coulomb blockade, and integer and fractional quantum Hall effect
- Presents the optical processes in nanostructures under a magnetic field
- Includes illustrative problems with hints for solutions in each chapter
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Specificații
ISBN-13: 9781482223040
ISBN-10: 148222304X
Pagini: 434
Ilustrații: 9 Tables, black and white; 204 Illustrations, black and white
Dimensiuni: 178 x 254 x 28 mm
Greutate: 0.89 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
ISBN-10: 148222304X
Pagini: 434
Ilustrații: 9 Tables, black and white; 204 Illustrations, black and white
Dimensiuni: 178 x 254 x 28 mm
Greutate: 0.89 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Cuprins
Preface
Organization of the Book
Acknowledgments
Authors
1 Crystalline Structure of Different Semiconductors
2 Quantum Theory, Energy Bands of Solids, Effective Mass, and Holes
3 Physics of Semiconductors
4 Transport Phenomena in Semiconductors
5 Low-Dimensional Semiconductors
6 Semiconductor Heterojunctions, Modulation-Doped Quantum Wells, and Superlattices
7 Transport Phenomena in Quantum Nanostructures under an Electric Field
8 Effect of Magnetic Field on the Transport Phenomena in Quantum Nanostructures
9 Optical Properties of Quantum Nanostructures
Appendix A.1: Some Fundamental Physical Constants
Appendix A.2: Some Important Parameters of Germanium, Silicon, and Gallium Arsenide at T = 300 K
Index
Organization of the Book
Acknowledgments
Authors
1 Crystalline Structure of Different Semiconductors
2 Quantum Theory, Energy Bands of Solids, Effective Mass, and Holes
3 Physics of Semiconductors
4 Transport Phenomena in Semiconductors
5 Low-Dimensional Semiconductors
6 Semiconductor Heterojunctions, Modulation-Doped Quantum Wells, and Superlattices
7 Transport Phenomena in Quantum Nanostructures under an Electric Field
8 Effect of Magnetic Field on the Transport Phenomena in Quantum Nanostructures
9 Optical Properties of Quantum Nanostructures
Appendix A.1: Some Fundamental Physical Constants
Appendix A.2: Some Important Parameters of Germanium, Silicon, and Gallium Arsenide at T = 300 K
Index
Recenzii
"The overall concerns of this stimulating book are aptly captured by its title. Like the book, its authors are from India and connect at a high level with the scientific world at large. First author Jyoti Prasad Banerjee (Univ. of Calcutta) has supervised many doctoral students, also serving as academic chairman of Kingston Educational Institute in West Bengal. Second author Suranjana Banerjee (Indian Institute of Engineering Science and Technology, Shibpur) is also active in both teaching and research. This book connects usefully with physics, materials science, and related areas. Chapters also include problems (some are provided with hints) before the pertinent bibliographic references. Overall, this book is both challenging to read and an excellent resource."
--A. E. Viste, emeritus, Augustana University, CHOICE, January 2020 Vol. 57 No. 5
Summing Up: Highly recommended. Upper-division undergraduates through faculty and professionals.
--A. E. Viste, emeritus, Augustana University, CHOICE, January 2020 Vol. 57 No. 5
Summing Up: Highly recommended. Upper-division undergraduates through faculty and professionals.
Descriere
This book covers the physics of semiconductor materials, basic concepts of quantum mechanics and nanoelectronics, band theory of solids, transport phenomena in semiconductors, and physics of low-dimensional quantum nanostructures, heterojunctions, and superlattices. The text is intended for junior- and senior-level undergraduate students.