Mesoscopic electronics in solid state nanostructures:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH-Verl.
2010
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Ausgabe: | 3., completely rev. and enlarged ed. |
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XV, 439 S. Ill., graph. Darst. |
ISBN: | 9783527409327 |
Internformat
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300 | |a XV, 439 S. |b Ill., graph. Darst. | ||
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Datensatz im Suchindex
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adam_text |
VII CONTENTS PREFACE XIII 1 INTRODUCTION 1 1.1 PRELIMINARY REMARKS 1 1.2
MESOSCOPIC TRANSPORT 2 1.2.1 BALLISTIC TRANSPORT 3 1.2.2 THE QUANTUM
HALL EFFECT AND SHUBNIKOV-DE HAAS OSCILLATIONS 5 1.2.3 SIZE QUANTIZATION
7 1.2.4 PHASE COHERENCE 8 1.2.5 SINGLE-ELECTRON TUNNELING AND QUANTUM
DOTS 9 1.2.6 SUPERLATTICES 10 1.2.7 SPINTRONICS 11 1.2.8 SAMPLES,
EXPERIMENTAL TECHNIQUES, AND TECHNOLOGICAL RELEVANCE 11 1.2.9 MODELING
15 1.2.10 WHAT IS NOT IN THIS BOOK 15 2 AN UPDATE OF SOLID STATE PHYSICS
17 2.1 CRYSTAL STRUCTURES 18 2.2 ELECTRONIC ENERGY BANDS 20 2.3
OCCUPATION OF ENERGY BANDS 34 2.3.1 THE ELECTRONIC DENSITY OF STATES M
2.3.2 OCCUPATION PROBABILITY AND CHEMICAL POTENTIAL 36 2.3.3 TRANSITION
BETWEEN DIMENSIONS: QUASI-N-DIMENSIONAL SYSTEMS 37 2.3.4 INTRINSIC
CARRIER CONCENTRATION 39 2.3.5 BLOCH WAVES AND LOCAUEZED ELECTRONS 40 2.
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/998577995 DIGITALISIERT
DURCH VIII 2.6.2 THE CONDUCTANCE PREDICTED BY THE SIMPLIFIED BOLTZMANN
EQUATION 53 2.6.3 THE MAGNETO-RESISTIVITY TENSOR 54 2.6.4 DIFFUSION
CURRENTS 58 2.7 SCATTERING MECHANISMS 59 2.8 SCREENING 62 3 SURFACES,
INTERFACES, AND LAYERED DEVICES 69 3.1 ELECTRONIC SURFACE STATES 71
3.1.1 SURFACE STATES IN ONE DIMENSION 71 3.1.2 SURFACES OF
THREE-DIMENSIONAL CRYSTALS 77 3.1.3 BAND BENDING AND FERMI LEVEL PINNING
79 3.2 SEMICONDUCTOR-METAL INTERFACES 80 3.2.1 BAND ALIGNMENT AND
SCHOTTKY BARRIERS 81 3.2.1.1 THE SCHOTTKY MODEL 83 3.2.1.2 THE SCHOTTKY
DIODE 84 3.2.2 OHMIC CONTACTS 85 3.3 SEMICONDUCTOR HETEROINTERFACES 86
3.4 FIELD EFFECT TRANSISTORS AND QUANTUM WELLS 88 3.4.1 THE SILICON
METAL-OXIDE-SEMICONDUCTOR FIELD EFFECT TRANSISTOR 89 3.4.1.1 THE MOSFET
AND DIGITAL ELECTRONICS 92 3.4.2 THE GA[AL]AS HIGH ELECTRON MOBILITY
TRANSISTOR 95 3.4.3 OTHER TYPES OF LAYERED DEVICES 97 IX 4.2.1
PROPERTIES OF LIQUID HELIUM 126 4.2.1.1 SOME PROPERTIES OF PURE 4 HE 126
4.2.1.2 SOME PROPERTIES OF PURE 3 HE 129 4.2.1.3 THE 3 HE/ 4 HE MIXRURE
130 4.2.2 HELIUM CRYOSTATS 131 4.2.2.1 4 HE CRYOSTATS 131 4.2.2.2 3 HE
CRYOSTATS 133 4.2.2.3 3 HE/ 4 HE DILUTION REFRIGERATORS 134 4.3
ELECTRONIC MEASUREMENTS ON NANOSTRUCTURES 136 4.3.1 SAMPLE HOLDERS 136
4.3.2 APPLICATION AND DETECTION OF ELECTRONIC SIGNALS 137 4.3.2.1
GENERAL CONSIDERATIONS 137 4.3.2.2 VOLTAGE AND CURRENT SOURCES 138
4.3.2.3 SIGNAL DETECTORS 139 4.3.2.4 SOME IMPORTANT MEASUREMENT SETUPS
142 5 IMPORTANT QUANTITIES IN MESOSCOPIC TRANSPORT 147 5.1 FERMI
WAVELENGTH 147 5.2 ELASTIC SCATTERING TIMES AND LENGTHS 247 5.3
DIFFUSION CONSTANT 148 6.5 IN-PLANE MAGNETIC FIELDS 177 6.6 THE QHE IN
GRAPHENE 182 7 QUANTUM WIRES AND BALLISTIC TRANSPORT 187 7.1 DIFFUSIVE
QUANTUM WIRES 189 7.1.1 BASIC PROPERTIES 289 7.1.2 BOUNDARY SCATTERING
292 7.2 BALLISTIC QUANTUM WIRES 293 7.2.1 PHENOMENOLOGY 293 7.2.2
CONDUCTANCE QUANTIZATION IN QPCS 294 7.2.3 MAGNETIC FIELD EFFECTS 202
7.2.4 THE "0.7 STRUCTURE" 205 7.2.5 FOUR-PROBE MEASUREMENTS ON BALLISTIC
QUANTUM WIRES 205 7.3 THE LANDAUER-BUETTIKER FORMALISM 207 7.3.1 EDGE
STATES 208 7.3.2 EDGE CHANNELS 222 7.4 FURTHER EXAMPLES OF QUANTUM WIRES
224 7.4.1 CONDUCTANCE QUANTIZATION IN CONVENTIONAL METALS 224 7.4.2
MOLECULAR WIRES 216 7.4.2.1 CARBON NANOTUBES 216 7.5 QUANTUM POINT
CONTACT CIRCUITS 219 7.5.1 NON-OHMIC BEHAVIOR OF QPCS IN SERIES 229
7.5.2 QPCS IN PARALLEL 222 7.6 SEMICLASSICAL LIMIT: CONDUCTANCE OF
BALLISTIC 2D SYSTEMS 223 7.7 CONCLUDING REMARKS 228 8 MODELING OF
BALLISTIC TRANSPORT IN MESOSCOPIC STRUCTURES 233 IGOR ZOZOULENKO 8.1
SCATTERING PROBLEM IN ONE DIMENSION 234 8.1.1 FORMULATION OF THE
SCATTERING PROBLEM 234 8.1. I XI 8.2.3 CALCULATIONS OF THE CONDUCTANCE
OF MESOSCOPIC STRUCTURES IN TWO DIMENSIONS 264 9 ELECTRONIC PHASE
COHERENCE 269 9.1 THE AHARONOV-BOHM EFFECT IN MESOSCOPIC CONDUCTORS 269
9.2 WEAK LOCALIZATION 273 9.3 UNIVERSAL CONDUCTANCE FLUCTUATIONS 275 9.4
PHASE COHERENCE IN BALLISTIC 2DEGS 280 9.5 RESONANT TUNNELING 282 10
SINGLE-ELECTRON TUNNELING 293 10.1 THE PRINCIPLE OF COULOMB BLOCKADE 293
10.2 BASIC SINGLE-ELECTRON TUNNELING CIRCUITS 296 10.2.1 COULOMB
BLOCKADE AT THE DOUBLE BARRIER 298 10.2.2 CURRENT-VOLTAGE
CHARACTERISTICS: THE COULOMB STAIRCASE 302 10.2.3 THE SET TRANSISTOR 306
10.3 SET CIRCUITS WITH MANY ISLANDS: THE SINGLE-ELECTRON PUMP 322 11
QUANTUM DOTS 319 11.1 PHENOMENOLOGY OF QUANTUM DOTS 320 11.2 THE
CONSTANT INTERACTION MODEL 324 11.2.1 QUANTUM DOTS IN INTERMEDIATE
MAGNETIC FIELDS 329 11.2.2 QUANTUM RINGS 332 11.3 BEYOND THE CONSTANT
INTERACTION MODEL 332 11.3.1 HUND'S RULES IN QUANTUM DOTS 333 11.3.2
QUANTUM DOTS IN STRENG MAGNETIC FIELDS 334 435 XII 13.1.1 TUNNELING
MAGNETO-RESISTANCE (TMR) AND GIANT MAGNETO-RESISTANCE (GMR) 366 13.1.2
SPIN INJECTION INTO A NON-MAGNETIC CONDUCTOR 369 13.2 THE DATTA-DAS SPIN
FIELD EFFECT TRANSISTOR 373 13.2.1 CONCEPT OF THE DATTA-DAS TRANSISTOR
373 13.2.2 SPIN INJECTION IN SEMICONDUCTORS 374 13.2.2.1 INTERFACE
TUNNEL BARRIERS 374 13.2.2.2 FERROMAGNETIC SEMICONDUCTORS 376 13.2.3
GATE-INDUCED SPIN ROTATION: THE RASHBA EFFECT 378 13.2.4 SPIN RELAXATION
AND SPIN DEPHASING 380 A SL AND CGS UNITS 383 B CORRELATION AND
CONVOLUTION 385 B.L FOURIER TRANSFORMATION 385 B.2 CONVOLUTIONS 385 B.3
CORRELATION FUNCTIONS 386 C CAPACITANCE MATRIX AND ELECTROSTATIC ENERGY
389 D THE TRANSFER HAMILTONIAN 393 E SOLUTIONS TO SELECTED EXERCISES 395
REFERENCES 425 INDEX |
any_adam_object | 1 |
author | Heinzel, Thomas |
author_GND | (DE-588)114501815 |
author_facet | Heinzel, Thomas |
author_role | aut |
author_sort | Heinzel, Thomas |
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building | Verbundindex |
bvnumber | BV025602890 |
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classification_tum | PHY 704f PHY 670f |
ctrlnum | (OCoLC)633088461 (DE-599)BVBBV025602890 |
dewey-full | 530.412 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 530 - Physics |
dewey-raw | 530.412 |
dewey-search | 530.412 |
dewey-sort | 3530.412 |
dewey-tens | 530 - Physics |
discipline | Physik |
edition | 3., completely rev. and enlarged ed. |
format | Book |
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id | DE-604.BV025602890 |
illustrated | Illustrated |
indexdate | 2024-07-20T10:34:52Z |
institution | BVB |
isbn | 9783527409327 |
language | English |
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physical | XV, 439 S. Ill., graph. Darst. |
publishDate | 2010 |
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publisher | Wiley-VCH-Verl. |
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spelling | Heinzel, Thomas Verfasser (DE-588)114501815 aut Mesoscopic electronics in solid state nanostructures Thomas Heinzel. With the collab. of Igor Zozoulenko 3., completely rev. and enlarged ed. Weinheim Wiley-VCH-Verl. 2010 XV, 439 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Literaturangaben Elektronischer Transport (DE-588)4210733-7 gnd rswk-swf Nanostruktur (DE-588)4204530-7 gnd rswk-swf Nanostruktur (DE-588)4204530-7 s Elektronischer Transport (DE-588)4210733-7 s DE-604 Zozoulenko, Igor Sonstige oth text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3385142&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020198142&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Heinzel, Thomas Mesoscopic electronics in solid state nanostructures Elektronischer Transport (DE-588)4210733-7 gnd Nanostruktur (DE-588)4204530-7 gnd |
subject_GND | (DE-588)4210733-7 (DE-588)4204530-7 |
title | Mesoscopic electronics in solid state nanostructures |
title_auth | Mesoscopic electronics in solid state nanostructures |
title_exact_search | Mesoscopic electronics in solid state nanostructures |
title_full | Mesoscopic electronics in solid state nanostructures Thomas Heinzel. With the collab. of Igor Zozoulenko |
title_fullStr | Mesoscopic electronics in solid state nanostructures Thomas Heinzel. With the collab. of Igor Zozoulenko |
title_full_unstemmed | Mesoscopic electronics in solid state nanostructures Thomas Heinzel. With the collab. of Igor Zozoulenko |
title_short | Mesoscopic electronics in solid state nanostructures |
title_sort | mesoscopic electronics in solid state nanostructures |
topic | Elektronischer Transport (DE-588)4210733-7 gnd Nanostruktur (DE-588)4204530-7 gnd |
topic_facet | Elektronischer Transport Nanostruktur |
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