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Electronic and optoelectronic properties of semiconductor structures / Jasprit Singh.

By: Material type: TextTextPublication details: Cambridge ; New York : Cambridge University Press, 2003.Description: 1 online resource (xxi, 532 pages) : illustrationsContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 052182379X
  • 9780521823791
  • 0511078633
  • 9780511078637
  • 0511075529
  • 9780511075520
  • 0511077068
  • 9780511077067
  • 9780511805745
  • 0511805748
  • 1107137020
  • 9781107137028
  • 0511205201
  • 9780511205200
  • 0511566239
  • 9780511566233
Subject(s): Genre/Form: Additional physical formats: Print version:: Electronic and optoelectronic properties of semiconductor structures.DDC classification:
  • 537.6/226 21
LOC classification:
  • QC611.6.E45 S56 2003
Other classification:
  • 33.77
  • 33.73
  • 53.56
  • O472
  • UP 2800
  • PHY 685f
Online resources:
Contents:
Cover; Half-title; Title; Copyright; CONTENTS; PREFACE; INTRODUCTION; Chapter 1 STRUCTURAL PROPERTIES OF SEMICONDUCTORS; Chapter 2 SEMICONDUCTOR BANDSTRUCTURE; Chapter 3 BANDSTRUCTURE MODIFICATIONS; Chapter 4 TRANSPORT: GENERAL FORMALISM; Chapter 5 DEFECT AND CARRIER-CARRIER SCATTERING; Chapter 6 LATTICE VIBRATIONS: PHONON SCATTERING; Chapter 7 VELOCITY-FIELD RELATIONS IN SEMICONDUCTORS; Chapter 8 COHERENCE, DISORDER, AND MESOSCOPIC SYSTEMS; Chapter 9 OPTICAL PROPERTIES OF SEMICONDUCTORS; Chapter 10 EXCITONIC EFFECTS AND MODULATION OF OPTICAL PROPERTIES.
Summary: This graduate textbook presents the underlying physics behind devices that drive today's technologies. Carefully chosen solved examples are utilized to convey important concepts. Over 250 figures and 200 homework exercises are included. Real-world applications are highlighted throughout the book, stressing the links between physical principles and actual devices.
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Item type Home library Collection Call number Materials specified Status Date due Barcode
Electronic-Books Electronic-Books OPJGU Sonepat- Campus E-Books EBSCO Available

Includes bibliographical references and index.

This graduate textbook presents the underlying physics behind devices that drive today's technologies. Carefully chosen solved examples are utilized to convey important concepts. Over 250 figures and 200 homework exercises are included. Real-world applications are highlighted throughout the book, stressing the links between physical principles and actual devices.

Cover; Half-title; Title; Copyright; CONTENTS; PREFACE; INTRODUCTION; Chapter 1 STRUCTURAL PROPERTIES OF SEMICONDUCTORS; Chapter 2 SEMICONDUCTOR BANDSTRUCTURE; Chapter 3 BANDSTRUCTURE MODIFICATIONS; Chapter 4 TRANSPORT: GENERAL FORMALISM; Chapter 5 DEFECT AND CARRIER-CARRIER SCATTERING; Chapter 6 LATTICE VIBRATIONS: PHONON SCATTERING; Chapter 7 VELOCITY-FIELD RELATIONS IN SEMICONDUCTORS; Chapter 8 COHERENCE, DISORDER, AND MESOSCOPIC SYSTEMS; Chapter 9 OPTICAL PROPERTIES OF SEMICONDUCTORS; Chapter 10 EXCITONIC EFFECTS AND MODULATION OF OPTICAL PROPERTIES.

English.

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