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Mesoscopic electronics in solid state nanostructures

Author: Thomas Heinzel
Publisher: Weinheim [Germany] : Wiley-VCH, ©2007.
Series: Physics textbook.
Edition/Format:   eBook : Document : English : 2nd completely rev. and enl. edView all editions and formats
Summary:
This text treats electronic transport in the regime where conventional textbook models are no longer applicable, including the effect of electronic phase coherence, energy quantization and single-electron charging. This second edition is completely updated and expanded, and now comprises new chapters on spin electronics and quantum information processing, transport in inhomogeneous magnetic fields, organic/molecular  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Heinzel, Thomas.
Mesoscopic electronics in solid state nanostructures.
Weinheim [Germany] : Wiley-VCH, ©2007
(DLC) 2007405254
(OCoLC)71348110
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Thomas Heinzel
ISBN: 9783527618927 3527618929
OCLC Number: 212141211
Notes: Previous edition: Weinheim : Wiley-VCH, 2003.
Description: 1 online resource (xv, 395 pages) : illustrations.
Contents: Mesoscopic Electronics in Solid State Nanostructures; Contents; Preface; 1 Introduction; 2 An update of solid state physics; 3 Surfaces, interfaces, and layered devices; 4 Experimental techniques; 5 Important quantities in mesoscopic transport; 6 Magneto-transport properties of quantum films; 7 Quantum wires and quantum point contacts; 8 Electronic phase coherence; 9 Single-electron tunneling; 10 Quantum dots; 11 Mesoscopic superlattices; 12 Spintronics; A SI and cgs units; B Correlation and convolution; C Capacitance matrix and electrostatic energy; D The transfer Hamiltonian.
Series Title: Physics textbook.
Responsibility: Thomas Heinzel.
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Abstract:

This text treats electronic transport in the regime where conventional textbook models are no longer applicable, including the effect of electronic phase coherence, energy quantization and  Read more...

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