Low dimensional semiconductor structures: characterization, modeling and applications
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2013
|
Schriftenreihe: | Nanoscience and technology
|
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | The NanoMats2009 conference was endorsed by the European Materials Research Society (E-MRS) |
Beschreibung: | XIV, 162 S. Ill., graph. Darst. |
ISBN: | 364228423X 9783642284236 |
Internformat
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CONTENTS
1 ADVANCES IN LOW-DIMENSIONAL SEMICONDUCTOR STRUCTURES 1
HILMI UNLII, MOHAMED REZAUL KARIM, H. HAKAN GIIREL, AND
OZDEN AKINCI
1.1 INTRODUCTION 1
1.2 SUPERLATTICES AND QUANTUM WELLS 2
1.3 STRAINED SUPERLATTICES AND QUANTUM WELLS 6
1.4 MODULATION-DOPED FIELD EFFECT TRANSISTORS 8
1.5 HETEROSTRUCTURE BIPOLAR TRANSISTORS 9
1.6 DEVELOPMENTS AT NANOSCALE 10
1.7 CONCLUSION 16
REFERENCES 17
2 MODELING OF LOW-DIMENSIONAL SEMICONDUCTORS 19
HILMI UNLII, H. HAKAN GIIREL, OZDEN AKINCI, AND MOHAMED
REZAUL KARIM
2.1 INTRODUCTION 19
2.2 TB VIEW OF SEMICONDUCTOR STRUCTURES 22
2.3 SEMIEMPIRICAL SP
3
S* TB MODEL 25
2.4 BAND STRUCTURE OF TERNARY SEMICONDUCTORS 28
2.5 BAND OFFSETS IN TERNARY/BINARY STRUCTURES 32
2.6 SEMIEMPIRICAL SP
3
D
5
S* TB MODEL 34
2.7 CONCLUSION 35
REFERENCES 37
3 GRAPHENE: PROPERTIES AND THEORY 39
NORMAN J. MORGENSTERN HORING
3.1 GRAPHENE 40
3.1.1 DEVICE-FRIENDLY MATERIAL PROPERTIES 40
3.1.2 APPLICATIONS 40
3.1.3 INTRODUCTION: SAMPLE PREPARATION TECHNIQUES:
ORIGINAL EXPERIMENTS 40
IX
HTTP://D-NB.INFO/1019305304
X CONTENTS
3.1.4 INTRODUCTION: STRUCTURE 41
3.1.5 INTRODUCTION: STRUCTURE, MASSLESS DIRAC SPECTRUM 41
3.2 GRAPHENE HAMILTONIAN 1 41
3.3 GRAPHENE HAMILTONIAN II 42
3.4 GRAPHENE HAMILTONIAN III 42
3.4.1 GRAPHENE: GREEN'S FUNCTIONS FOR NULL FIELD
AND FINITE MAGNETIC FIELD 43
3.4.2 GRAPHENE QUANTUM DOT IN MAGNETIC FIELD 45
3.4.3 MORE ABOUT GRAPHENE QUANTUM DOTS 47
3.5 DIELECTRIC SCREENING FUNCTION, K, (ON THE 2D GRAPHENE SHEET) 47
3.5.1 GRAPHENE POLARIZABILITY: DEGENERATE LIMIT
(T = 0K, NO MAGNETIC FIELD) 48
3.5.2 GRAPHENE PLASMON 49
3.5.3 NEW GRAPHENE TRANSVERSE ELECTRIC MODE IN
TERAHERTZ RANGE 50
3.5.4 COUPLING OF GRAPHENE AND SURFACE PLASMONS 50
3.6 GRAPHENE ENERGY LOSS SPECTROSCOPY
AND VAN DER WAALS INTERACTION 51
3.6.1 ATOM/GRAPHENE VAN DER WAALS INTERACTION 1 52
3.6.2 ATOM/GRAPHENE VAN DER WAALS INTERACTION II 52
3.6.3 GRAPHENE DOUBLE LAYER VAN DER WAALS INTERACTION 53
3.6.4 GRAPHENE QUASIPARTICLE SELF-ENERGY, ^ 54
3.6.5 ELECTRONIC SUPERLATTICES IN CORRUGATED GRAPHENE 55
3.7 GRAPHENE TRANSPORT: EXPERIMENTAL BACKGROUND 55
3.8 GRAPHENE TRANSPORT: THEORETICAL BACKGROUND-A 56
3.9 GRAPHENE TRANSPORT: THEORETICAL BACKGROUND-B 56
3.10 KINETIC EQUATION FOR GRAPHENE 57
3.10.1 KINETIC EQUATION FORMULATION FOR CURRENT AND
DISTRIBUTION FUNCTION 57
3.10.2 KINETIC EQUATION: SOLUTION I 57
3.10.3 KINETIC EQUATION: SOLUTION II 58
3.10.4 KINETIC EQUATION: CONDUCTIVITY 1 58
3.10.5 STATIC SCREENING DIELECTRIC FUNCTION 59
3.10.6 CONDUCTIVITY RESULTS AND DISCUSSION I 59
3.10.7 CONDUCTIVITY RESULTS AND DISCUSSION II 59
3.10.8 CONDUCTIVITY RESULTS AND DISCUSSION III 60
3.10.9 CONDUCTIVITY RESULTS AND DISCUSSION IV 60
3.10.10 CONDUCTIVITY RESULTS AND DISCUSSION V 61
3.10.11 CONDUCTIVITY RESULTS AND DISCUSSION VI 61
3.11 DYNAMIC AC CONDUCTIVITY 61
3.11.1 AC KINETIC EQUATION FORMULATION FOR CURRENT
AND DISTRIBUTION FUNCTION -YY P 62
3.11.2 DYNAMIC AC CONDUCTIVITY 64
3.11.3 AC CONCLUSIONS 66
3.12 DEVICE-FRIENDLY FEATURES OF GRAPHENE 1 66
3.12.1 DEVICE-FRIENDLY FEATURES OF GRAPHENE II 66
CONTENTS XI
3.12.2 DEVICE-FRIENDLY FEATURES OF GRAPHENE III 67
3.12.3 DEVICE-FRIENDLY FEATURES OF GRAPHENE IV 67
3.12.4 DEVICE-FRIENDLY FEATURES OF GRAPHENE V 68
3.12.5 DEVICE-FRIENDLY FEATURES OF GRAPHENE VI 68
4 FUNCTIONALIZATION OF GRAPHENE NANORIBBONS 69
HALDUN SEVINGLI, MEHMET TOPSAKAL, AND SALIM CIRACI
4.1 INTRODUCTION 69
4.2 ELECTRONIC AND MAGNETIC PROPERTIES OF 2D AND 1D GRAPHENE 71
4.2.1 ELECTRONS IN HONEYCOMB LATTICE 71
4.2.2 ELECTRONIC AND MAGNETIC PROPERTIES OF GNRS 73
4.3 FUNCTIONALIZATION THROUGH SUPERLATTICE FORMATION 75
4.3.1 SUPERLATTICES OF ARMCHAIR GRAPHENE NANORIBBONS 75
4.3.2 SUPERLATTICES OF ZIGZAG GRAPHENE NANORIBBONS 82
4.4 FUNCTIONALIZATION THROUGH TM-ATOM DOPING 86
4.5 CONCLUSIONS 90
REFERENCES 91
5 ATOM/MOLECULE VAN DER WAALS INTERACTION WITH GRAPHENE 93
NORMAN J. MORGENSTERN HORING, VASSILIOS FESSATIDIS, AND JAY
D. MANCINI
5.1 INTRODUCTION: ATOM-GRAPHENE VAN DER WAALS INTERACTION
AND THE PLASMA IMAGE 93
5.2 NONLOCAL DIPOLAR VAN DER WAALS INTERACTION OF AN
ATOM/MOLECULE AND GRAPHENE 97
REFERENCES 99
6 OPTICAL STUDIES OF SEMICONDUCTOR QUANTUM DOTS 101
H. YUKSELICI, . ALLAHVERDI, A. AJIKOGLU, H. UNLII, A. BAYSAL,
M. ULHA, R. INCE, A. INCE, M. FEENEY, AND H. ATHALIN
6.1 INTRODUCTION 101
6.2 SOLID-PHASE PRECIPITATION IN GLASS 102
6.3 PARTICLE-IN-A-BOX MODEL TO DETERMINE THE AVERAGE
NANOCRYSTAL RADIUS AND SIZE DISTRIBUTION 104
6.4 RAMAN AND PHOTOLUMINESCENCE SPECTROSCOPIES 108
6.5 PHOTOABSORPTION SPECTRA ILL
6.6 QUANTUM DOTS IN SOLUTION PHASE 113
6.7 INTERFEROMETRIC ANALYSIS OF QD SAMPLES 114
REFERENCES 116
7 FRIEDEL SUM RULE IN ONE- AND QUASI-ONE-DIMENSIONAL WIRES 119
VASSILIOS VARGIAMIDIS, VASSILIOS FESSATIDIS, AND NORMAN
J. MORGENSTERN HORING
7.1 INTRODUCTION 119
7.2 LOCAL DENSITY OF STATES AND FRIEDEL SUM RULE
FOR THE ONE-DIMENSIONAL WIRE 120
7.2.1 LOCAL DENSITY OF STATES 122
7.2.2 FRIEDEL SUM RULE 125
XII CONTENTS
7.3 FRIEDEL SUM RULE IN A QUASI-ONE-DIMENSIONAL WIRE 127
7.4 SUMMARY 129
REFERENCES 130
8 EFFECTS OF TEMPERATURE ON THE SCATTERING PHASES AND
DENSITY OF STATES IN QUANTUM WIRES 131
VASSILIOS VARGIAMIDIS, VASSILIOS FESSATIDIS, AND NORMAN J.
MORGENSTERN HORING
8.1 INTRODUCTION 131
8.2 FORMULATION 133
8.2.1 LOCAL DENSITY OF STATES 133
8.2.2 SCATTERING PHASES 135
8.2.3 SIMPLE MODEL SCATTERER 136
8.3 FINITE TEMPERATURE EFFECTS 138
8.4 SUMMARY 141
REFERENCES 141
9 FABRICATION OF LOW DIMENSIONAL NANOWIRE-BASED DEVICES
USING DIELETROPHORESIS 143
RAMAZAN KIZIL
9.1 INTRODUCTION 143
9.2 NANOGAP ELECTRODES 145
9.3 NANOTECHNOLOGY APPLIED TO BIO/MOLECULAR DETECTION
AND NANOGAP ELECTRODES 146
9.4 DIELECTROPHORESIS 147
9.5 APPLICATIONS OF DEP 148
9.6 NANOWIRE SYNTHESIS AND CHARACTERIZATION 148
9.7 INTEGRATION OF NANOWIRES WITH A MICROSYSTEM 150
9.8 MICROCHIP DESIGN 150
9.9 NANOWIRE ALIGNMENT BY DEP 151
REFERENCES 158
INDEX
161 |
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spelling | Low dimensional semiconductor structures characterization, modeling and applications Hilmi Ünlü... (ed.) NanoMats-2009 NanoTr-4 Berlin [u.a.] Springer 2013 XIV, 162 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Nanoscience and technology The NanoMats2009 conference was endorsed by the European Materials Research Society (E-MRS) Niederdimensionaler Halbleiter (DE-588)4482656-4 gnd rswk-swf Nanostruktur (DE-588)4204530-7 gnd rswk-swf (DE-588)1071861417 Konferenzschrift gnd-content Niederdimensionaler Halbleiter (DE-588)4482656-4 s Nanostruktur (DE-588)4204530-7 s DE-604 Ünlü, Hilmi Sonstige oth European Materials Research Society Sonstige (DE-588)5000064-0 oth Erscheint auch als Online-Ausgabe 978-3-642-28424-3 text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3968638&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=026841735&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Low dimensional semiconductor structures characterization, modeling and applications Niederdimensionaler Halbleiter (DE-588)4482656-4 gnd Nanostruktur (DE-588)4204530-7 gnd |
subject_GND | (DE-588)4482656-4 (DE-588)4204530-7 (DE-588)1071861417 |
title | Low dimensional semiconductor structures characterization, modeling and applications |
title_alt | NanoMats-2009 NanoTr-4 |
title_auth | Low dimensional semiconductor structures characterization, modeling and applications |
title_exact_search | Low dimensional semiconductor structures characterization, modeling and applications |
title_full | Low dimensional semiconductor structures characterization, modeling and applications Hilmi Ünlü... (ed.) |
title_fullStr | Low dimensional semiconductor structures characterization, modeling and applications Hilmi Ünlü... (ed.) |
title_full_unstemmed | Low dimensional semiconductor structures characterization, modeling and applications Hilmi Ünlü... (ed.) |
title_short | Low dimensional semiconductor structures |
title_sort | low dimensional semiconductor structures characterization modeling and applications |
title_sub | characterization, modeling and applications |
topic | Niederdimensionaler Halbleiter (DE-588)4482656-4 gnd Nanostruktur (DE-588)4204530-7 gnd |
topic_facet | Niederdimensionaler Halbleiter Nanostruktur Konferenzschrift |
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