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Physics of semiconductors and nanostructures / Jyoti Prasad Banerjee, Suranjana Banerjee.

By: Contributor(s): Material type: TextTextPublication details: Boca Raton, FL : CRC Press, Taylor & Francis Group, [2019]Description: pages cmISBN:
  • 148222304X
  • 9781482223040
Subject(s): DDC classification:
  • 537.6221 23
LOC classification:
  • QC611 .B25 2019
Contents:
Crystalline structure of different semiconductors -- Quantum theory, energy bands of solids, effective mass and holes -- Physics of semiconductors -- Transport phenomena in semiconductors -- Low dimensional semiconductors -- Semiconductor heterojunctions, modulation doped quantum wells and superlattices -- Transport phenomena in quantum nanostructures under an electric field -- Effect of magnetic field on the transport phenomena in quantum nanostructures -- Optical properties of quantum nanostructures.
Summary: "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"-- Provided by publisher.
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Includes bibliographical references and index.

Crystalline structure of different semiconductors -- Quantum theory, energy bands of solids, effective mass and holes -- Physics of semiconductors -- Transport phenomena in semiconductors -- Low dimensional semiconductors -- Semiconductor heterojunctions, modulation doped quantum wells and superlattices -- Transport phenomena in quantum nanostructures under an electric field -- Effect of magnetic field on the transport phenomena in quantum nanostructures -- Optical properties of quantum nanostructures.

"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"-- Provided by publisher.

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