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Semiconductor HETEROJUNCTIONS : AND NANOSTRUCTURES

By: Publication details: Oxford ; New York : Oxford University Press, 2010.Description: 1 online resource (xv, 554 pages) : illustrations 24CMContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 0191574171
  • 9780191574177
Subject(s): Additional physical formats: Print version:: Semiconductor nanostructures.DDC classification:
  • 030621.3815/2 22
LOC classification:
  • TK7871.85 .I46 2010eb
Contents:
1 Introduction; 2 Semiconductor crystals; 3 Band structure; 4 Envelope functions and effective mass approximation; 5 Material aspects of heterostructures, doping, surfaces, and gating; 6 Fabrication of semiconductor nanostructures; 7 Electrostatics of semiconductor nanostructures; 8 Quantum mechanics in semiconductor nanostructures; 9 Two-dimensional electron gases in heterostructures; 10 Diffusive classical transport in two-dimensional electron gases; 11 Ballistic electron transport in quantum point contacts; 12 Tunneling transport through potential barriers.
Summary: This introduction to the physics of semiconductor nanostructures and their transport properties emphasizes five fundamental transport phenomena: quantized conductance, tunnelling transport, the Aharonov-Bohm effect, the quantum Hall effect and the Coulomb blockade effect.
Item type: كتاب
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Item type Current library Call number Status Date due Barcode
كتاب كتاب العلوم - فيزياء Available
كتاب كتاب العلوم - فيزياء Available
كتاب كتاب العلوم - فيزياء Available
كتاب كتاب العلوم - فيزياء Available
كتاب كتاب العلوم - فيزياء Available
كتاب كتاب العلوم - فيزياء Available
كتاب كتاب العلوم - فيزياء Available
كتاب كتاب العلوم - فيزياء Available
كتاب كتاب العلوم - فيزياء Available
كتاب كتاب العلوم - فيزياء Available
كتاب كتاب العلوم - فيزياء Available
كتاب كتاب العلوم - فيزياء Available
كتاب كتاب العلوم - فيزياء Available

Includes bibliographical references (pages 527-544) and index.

1 Introduction; 2 Semiconductor crystals; 3 Band structure; 4 Envelope functions and effective mass approximation; 5 Material aspects of heterostructures, doping, surfaces, and gating; 6 Fabrication of semiconductor nanostructures; 7 Electrostatics of semiconductor nanostructures; 8 Quantum mechanics in semiconductor nanostructures; 9 Two-dimensional electron gases in heterostructures; 10 Diffusive classical transport in two-dimensional electron gases; 11 Ballistic electron transport in quantum point contacts; 12 Tunneling transport through potential barriers.

This introduction to the physics of semiconductor nanostructures and their transport properties emphasizes five fundamental transport phenomena: quantized conductance, tunnelling transport, the Aharonov-Bohm effect, the quantum Hall effect and the Coulomb blockade effect.

Print version record.