High-temperature superconductors:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Heidelberg [u.a.]
Springer
2010
|
Schriftenreihe: | Springer series in materials Science
125 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIV, 223 S. Ill. |
ISBN: | 9783642261022 9783642007118 9783642007125 |
Internformat
MARC
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245 | 1 | 0 | |a High-temperature superconductors |c Ajay Kumar Saxena |
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Datensatz im Suchindex
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adam_text | CONTENTS THE PHENOMENON: OCCURRENCE AND CHARACTERISTICS 1 1.1 MARCHING
TOWARDS ABSOLUTE ZERO 1 1.2 DISCOVERY OF SUPERCONDUCTIVITY 2 1.3
OCCURRENCE OF SUPERCONDUCTIVITY 3 1.3.1 ELEMENTAL SUPERCONDUCTIVITY 3
1.3.2 ALLOYS 3 1.3.3 BINARY COMPOUNDS (A-15 MATERIALS) 3 1.3.4 HEAVY
FERMION SUPERCONDUCTORS 4 1.3.5 ORGANIC SUPERCONDUCTORS 4 1.3.6
CSSO-BASED SUPERCONDUCTORS 6 1.4 THE SUPERCONDUCTING STATE 7 1.5 PHASE
COHERENCE 9 1.6 COHERENCE LENGTH 10 1.6.1 PIPPARD S EQUATION AND
COHERENCE LENGTH 11 1.6.2 THE SIZE OF AN ELECTRON PAIR 12 1.6.3 ANALOGY
BETWEEN LONG RANGE SPATIAL ORDER IN A SOLID AND PHASE-ORDER IN A
SUPERCONDUCTOR 13 1.7 CRITICAL MAGNETIC FIELD 13 1.8 MEISSNER EFFECT 14
1.9 COMPARISON BETWEEN A SUPERCONDUCTOR AND A VERY GOOD (OR IDEAL)
CONDUCTOR 15 1.10 ISOTOPE EFFECT 17 1.11 ISOTOPE EFFECT IN HTSCS 18
1.11.1 OPTICAL BEHAVIOUR STUDY 18 1.11.2 ELASTIC AND ULTRASONIC STUDIES
18 1.12 THE ENERGY GAP 19 1.13 THERMODYNAMICS OF SUPERCONDUCTORS 21
1.13.1 LATENT HEAT OF SUPERCONDUCTING TRANSITIONS 24 1.13.2 HEAT
CAPACITY OF SUPERCONDUCTORS 24 1.13.3 STRONG COUPLING CASE 26 1.14
LONDON EQUATIONS AND PENETRATION DEPTH 27 BIBLIOGRAFISCHE INFORMATIONEN
HTTP://D-NB.INFO/995947163 DIGITALISIERT DURCH X CONTENTS 1.15
GINZBERG-LANDAU THEORY 29 1.16 TYPE-I AND TYPE-II SUPERCONDUCTORS 32
1.16.1 HOW A NORMAL CORE IS FORMED IN MIXED STATE? 35 1.17 WHY MATERIALS
WITH HIGH T C TEND TO FALL IN TYPE-II CATEGORY? 37 1.18 WHY IT IS
EXTREMELY DIFFICULT TO OBTAIN HIGHER T C ? 38 REFERENCES 39 2 CRYSTAL
STRUCTURE OF HIGH TEMPERATURE SUPERCONDUCTORS .. 41 2.1 INTRODUCTION 41
2.1.1 PEROVSKITE STRUCTURE 41 2.2 THE STRUCTURE OF YBA 2 CU 3 O 7 _ X 41
2.2.1 VARIATION OF T C WITH OXYGEN STOICHIOMETRY 43 2.3 THE STRUCTURE OF
LA 2 - A: M X CUO4 46 2.4 THE STRUCTURE OF BI-BASED CUPRATE
SUPERCONDUCTORS 46 2.5 STRUCTURE OF THALLIUM-BASED CUPRATE
SUPERCONDUCTORS 48 2.5.1 COMPARISON OF BISMUTH AND THALLIUM BASED
CUPRATES . 49 2.6 MERCURY BASED CUPRATE SUPERCONDUCTORS 51 2.7
CHARACTERISTICS OF HIGH TEMPERATURE SUPERCONDUCTORS 53 2.7.1 RESEMBLANCE
BETWEEN HTSC AND CONVENTIONAL SUPERCONDUCTORS 54 2.7.2 UNUSUAL
PROPERTIES OF HTSCS 54 2.8 FERMI ENERGY AND FERMI VELOCITY OF
SUPERCONDUCTORS 55 2.9 COMPARISON OF HIGH T C CUPRATES WITH TYPICAL
METALS I CONTENTS XI 3.14 EXPERIMENTAL RESULTS ON INTRODUCTION OF FLUX
PINNING CENTERS IN HTSCS 77 3.14.1 MELT TEXTURED GROWTH 77 3.14.2
INTRODUCTION OF SECOND PHASE (CHEMICAL INHOMOGENEITY) 78 3.14.3 EXTENDED
DEFECTS (COLUMNAR DEFECTS) 78 3.15 MAGNETIC PHASE DIAGRAMS OF HTSCS 78
3.16 MELTING OF THE FLL BECAUSE OF REDUCED SIZE OF GL(T) 80 3.16.1
EFFECT OF REDUCED SIZE OF CGL(T) 81 3.17 KOSTERLITZ-THOULESS-BEREZINSKI
TRANSITION 81 3.18 ANISOTROPY AND CHANGE OVER FROM A 2D TO 3D BEHAVIOUR
82 3.18.1 HIGH FIELD REGIME (B » B CR ) 83 3.18.2 WEAK FIELD REGION (B
B CT ) 83 3.18.3 THE CROSS-OVER FIELD B CT 84 3.19 THE EFFECT OF
ANISOTROPY PARAMETER 7 ON THE VORTEX PHASE TRANSITIONS 84 3.20 DESIRED
MICROSTRUCTURE SYNTHESIS FOR HIGH CRITICAL CURRENT DENSITY IN HIGH T C
SUPERCONDUCTORS 85 3.20.1 SOME INHERENT PROBLEMS (WEAK-LINKS AND FLUX
LATTICE MELTING ) 85 3.20.2 POSSIBLE WAYS OUT OF WEAK-LINKS 87 3.20.3
PROVISION OF FLUX PINNING SITES 91 3.20.4 DESIRED MICROSTRUCTURE FOR
HIGH J C 93 3.21 HIGH T C TECHNOLOG XII CONTENTS 4.7.1 ELECTRON BEAM
EVAPORATION 112 4.7.2 MOLECULAR BEAM EPITAXY 113 4.7.3 SPUTTER
DEPOSITION 114 4.7.4 SPUTTER DEPOSITION OF HTSC FILMS 116 4.7.5 PULSED
LASER DEPOSITION 118 4.7.6 CHEMICAL VAPOUR DEPOSITION 119 REFERENCES 120
5 SUPERCONDUCTIVITY IN CUPRATES 123 5.1 MOTT INSULATOR 123 5.2 THE FIRST
CUPRATE LA 2 _ X M X CUO 4 123 5.3 THE CHARGE-TRANSFER MODEL OF A HIGH T
C CUPRATE SUPERCONDUCTOR 124 5.4 ELECTRON AND HOLE DOPING OF CUO 2
LAYERS 125 5.4.1 SOURCE OF HOLE (CARRIERS) IN VARIOUS CUPRATE FAMILIES
.. 126 5.5 THE CONDUCTIONS PLANE IN CUPRATES 127 5.6 OCTAHEDRAL LIGAND
FIELD 128 5.7 JAHN-TELLER EFFECT 128 5.8 ENERGY LEVELS FOR COPPER 129
5.9 COMPARISON OF CU 3+ AND CU 2+ IONS IN THE OXIDE OCTAHEDRON . 130
5.10 THE HAMILTONIAN AND THE RELEVANT ENERGY LEVELS IN THE CONDUCTION
PLANE 130 5.11 HOLE SUPERCONDUCTIVITY IN OXIDES 132 5.12 TWO BAND AND
ONE BAND HUBBARD MODELS 134 5.13 THE ELECTRONIC STRUCTURE OF CUPRATES
134 5.14 STRONG ELECTRON CORRELATIONS 136 5.15 CHARGE DENSITY WAVE AND
SPIN DENSITY WAVE 137 5.16 VARIATION OF T C CONTENTS XIII 6.4 AC
JOSEPHSON EFFECT 153 6.5 GIAEVER TUNNELLING/TUNNELLING OF
QUASI-PARTICLES 155 6.6 SUPERCONDUCTIVE TUNNELLING IN A S-I-S JUNCTION
159 6.7 QUASI-PARTICLE TUNNELLING FOR A SYMMETRIC S-I-S JUNCTION ....
162 6.7.1 EFFECT OF THICKNESS OF INSULATOR IN S-I-S JUNCTION 163 6.8
PROPERTIES OF JOSEPHSON JUNCTION 163 6.9 FLUX QUANTISATION 165 6.10
SQUIDS 166 6.11 DC SQUID (A SUPERCONDUCTING LOOP WITH TWO JOSEPHSON
JUNCTIONS) 167 6.11.1 THE CHARACTERISTICS OF AN IDEAL DC SQUID 170 6.12
THE RF SQUID 172 6.12.1 PRINCIPLE 172 6.12.2 WORKING 173 6.13
APPLICATIONS OF SQUIDS 176 6.14 HTSC SQUIDS 176 6.15 SOME PRACTICAL RF
SQUIDS 177 6.15.1 BREAK JUNCTION RF SQUIDS 177 6.15.2 TWO-AND ONE-HOLE
RF SQUIDS 177 6.16 SQUIDS FABRICATED FROM FILMS 178 6.16.1 SQUIDS USING
POLYCRYSTALLINE FILMS 179 6.16.2 SQUIDS USING EPITAXIAL FILMS 180 6.17
HOW SQUIDS ARE USED FOR FLUX MEASUREMENTS 182 6.17.1 SUPERCONDUCTING
FLUX TRANSFORMERS 184 6.18 DESIGN AND NOISE ASPECTS OF SQUIDS 186 6.18.1
CHOICE FOR CRITICAL CURRENT I C OF J.J 186 6.18.2 CHOICE FOR THE
INDUCTANCE OF THE RING 186 6.18.3 NOISE, NOISE ENERGY AND ENERGY
RESOLUTION OF SQUID . 187 6.19 PROXIMITY EFFECT (INDUCED
SUPERCONDUCTIVITY) 190 6.19.1 S-I JUNCTION 192 6.20 S-N JUNCTION 192
6.20.1 FUNDAMENTAL PROPERTIES OF S-N CONTACTS 192 6.20. XIV CONTENTS 7.2
ANDERSON S RESONATING VALENCE BOND THEORY 210 7.2.1 ANDERSON S VALENCE
BONDS 210 7.3 SPIN-BAG THEORY 214 7.3.1 QUESTIONS WHICH REMAIN 214
REFERENCES 214 8 APPLICATION OF SUPERCONDUCTIVITY 215 8.1 POTENTIAL
APPLICATIONS 215 8.1.1 SUPERCONDUCTING MAGNETS 215 8.2 APPLICATIONS OF
HIGH-T C OXIDE SUPERCONDUCTORS 215 8.3 APPLICATIONS OF HIGH T C FILMS
217 INDEX 219
|
any_adam_object | 1 |
author | Saxena, A. K. |
author_GND | (DE-588)139684115 |
author_facet | Saxena, A. K. |
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ctrlnum | (OCoLC)489627939 (DE-599)DNB995947163 |
dewey-full | 537.623 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 537 - Electricity and electronics |
dewey-raw | 537.623 |
dewey-search | 537.623 |
dewey-sort | 3537.623 |
dewey-tens | 530 - Physics |
discipline | Physik |
format | Book |
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id | DE-604.BV035721372 |
illustrated | Illustrated |
indexdate | 2024-07-09T21:51:56Z |
institution | BVB |
isbn | 9783642261022 9783642007118 9783642007125 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-017998160 |
oclc_num | 489627939 |
open_access_boolean | |
owner | DE-20 DE-703 DE-11 DE-19 DE-BY-UBM |
owner_facet | DE-20 DE-703 DE-11 DE-19 DE-BY-UBM |
physical | XIV, 223 S. Ill. |
publishDate | 2010 |
publishDateSearch | 2010 |
publishDateSort | 2010 |
publisher | Springer |
record_format | marc |
series | Springer series in materials Science |
series2 | Springer series in materials Science |
spelling | Saxena, A. K. Verfasser (DE-588)139684115 aut High-temperature superconductors Ajay Kumar Saxena Heidelberg [u.a.] Springer 2010 XIV, 223 S. Ill. txt rdacontent n rdamedia nc rdacarrier Springer series in materials Science 125 High temperature superconductors Hochtemperatursupraleiter (DE-588)4220922-5 gnd rswk-swf Hochtemperatursupraleiter (DE-588)4220922-5 s DE-604 Springer series in materials Science 125 (DE-604)BV000683335 125 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017998160&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Saxena, A. K. High-temperature superconductors Springer series in materials Science High temperature superconductors Hochtemperatursupraleiter (DE-588)4220922-5 gnd |
subject_GND | (DE-588)4220922-5 |
title | High-temperature superconductors |
title_auth | High-temperature superconductors |
title_exact_search | High-temperature superconductors |
title_full | High-temperature superconductors Ajay Kumar Saxena |
title_fullStr | High-temperature superconductors Ajay Kumar Saxena |
title_full_unstemmed | High-temperature superconductors Ajay Kumar Saxena |
title_short | High-temperature superconductors |
title_sort | high temperature superconductors |
topic | High temperature superconductors Hochtemperatursupraleiter (DE-588)4220922-5 gnd |
topic_facet | High temperature superconductors Hochtemperatursupraleiter |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017998160&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV000683335 |
work_keys_str_mv | AT saxenaak hightemperaturesuperconductors |