Thermodynamic properties of solids: experiment and modeling
Gespeichert in:
Format: | Buch |
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Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
2010
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Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | XX, 322 S. Ill., graph. Darst. |
ISBN: | 9783527408122 |
Internformat
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VIL CONTENTS PREFACE XV LIST OF CONTRIBUTORS XVII ABBREVIATIONS XIX 1
THERMODYNAMIC PROPERTIES OF SOLIDS: EXPERIMENT AND MODELING 1 SAMRATH L
CHAPLOT, RANJAN MITTAL, AND NARAYANI CHOUDHWY 1.1 INTRODUCTION I 1.2
SPECTROSCOPIC TECHNIQUES AND SEMIEMPIRICAL THEORETICAL METHODS 2 1.3
THERMAL MEASUREMENT TECHNIQUES 3 1.4 FIRST-PRINCIPLES QUANTUM MECHANICAL
METHODS 3 1.5 OUTLOOK 4 REFERENCES 4 2 OPTICAL SPECTROSCOPY METHODS AND
HIGH-PRESSURE-HIGH-TEMPERATURE STUDIES 7 ALAIN POLIAN, PATRICK SIMON,
AND OLIVIER PAGES 2.1 METHODS AND PRINCIPLES: AMBIENT CONDITIONS 9 2.1.1
SEMICONDUCTORS 9 2.1.2 Q ~ 0 OPTICAL MODES: CONCEPT OF POLARITONS 10
2.1.2.1 MAXWELL EQUATIONS 10 2.1.2.2 MECHANICAL EQUATIONS 11 2.1.2.3
LORENTZ APPROACH 12 2.1.2.4 EFFECTIVE CHARGE/FORCE CONSTANT 13 2.1.2.5
COMBINED ELECTRICAL/MECHANICAL EQUATIONS: DISPERSION OF POLARITONS MODES
14 2.1.3 VIBRATION SPECTRA 15 BIBLIOGRAFISCHE INFORMATIONEN
HTTP://D-NB.INFO/994010508 DIGITALISIERT DURCH VIII CONTENTS 2.1.4.1
MULTIOSCILLATOR SYSTEM 20 2.1.4.2 MULTILAYER SYSTEM 21 2.1.4.3
MULTICOMPONENT SYSTEM (COMPOSITE) 22 2.1.5 SELECTION RULES 23 2.1.5.1
RAMAN SCATTERING 23 2.1.5.2 IR ABSORPTION 24 2.1.5.3 BRILLOUIN
SCATTERING 24 2.1.6 WHEN DEPARTING FROM PURE CRYSTALS . 25 2.2 OPTICAL
VIBRATIONAL SPECTROSCOPIES UNDER EXTREME CONDITIONS 25 2.2.1 A SPECIFIC
IMPACT/IDENTITY IN THE FIELD 25 2.2.1.1 SOLID-STATE PHYSICS 26 2.2.1.2
EARTH SCIENCES 28 2.2.2 SPECIFICITIES AND INSTRUMENTATION FOR
HIGH-TEMPERATURE AND HIGH-PRESSURE INVESTIGATIONS 29 2.2.2.1 TEMPERATURE
AND EMISSIVITY 29 2.2.2.2 HIGH-PRESSURE OPTICAL CELLS, DIAMOND-ANVIL
CELLS 31 2.2.2.3 HIGH-TEMPERATURE INSTRUMENTATION 34 2.2.2.4 BRILLOUIN
DEVICES 37 2.2.2.5 RAMAN DEVICES 38 2.2.2.6 INFRARED DEVICES: EMISSIVITY
MEASUREMENTS (TEMPERATURE AND PRESSURE) 42 2.2.3 ACOUSTICAL MODES 44
CONTENTS IX 3.2.1 THEORETICAL FORMALISMS 77 3.3 COMPUTATIONAL TECHNIQUES
80 3.4 THERMODYNAMIC PROPERTIES OF SOLIDS 82 3.5 THEORY OF INELASTIC
NEUTRON SCATTERING 84 3.5.1 INELASTIC NEUTRON SCATTERING FROM SINGLE
CRYSTALS: PHONON DISPERSION RELATIONS 85 3.5.2 INELASTIC NEUTRON
SCATTERING FROM POWDER SAMPLES: PHONON DENSITY OF STATES 86 3.6
EXPERIMENTAL TECHNIQUES FOR INELASTIC NEUTRON SCATTERING 88 3.6.1
MEASUREMENTS USING TRIPLE-AXIS SPECTROMETER 89 3.6.1.1 PHONON DENSITY OF
STATES 89 3.6.1.2 PHONON DISPERSION RELATIONS 91 3.6.2 MEASUREMENTS
USING TIME-OF-FLIGHT TECHNIQUE 91 3.6.2.1 PHONON DENSITY OF STATES 92
3.6.2.2 PHONON DISPERSION RELATIONS 93 3.7 MOLECULAR DYNAMICS SIMULATION
93 3.8 APPLICATIONS OF INELASTIC NEUTRON SCATTERING, LATTICE DYNAMICS,
AND COMPUTER SIMULATION 95 3.8.1 PHONON DENSITY OF STATES 95 3.8.2 RAMAN
AND INFRARED MODES, AND PHONON DISPERSION RELATION 97 3.8.3 ELASTIC
CONSTANTS, GIBBS FREE ENERGIES, AND PHASE STABILITY 100 CONTENTS 4.4.3
THE AGGREGATE ELASTICITY OF POLYCRYSTALLINE MATERIALS 138 4.4.4 EFFECTS
OF TEXTURE 140 4.5 IXS IN THE HIGH-Q LIMIT: THE PHONON DENSITY OF STATES
141 4.5.1 MAGNESIUM OXIDE 143 4.5.2 BORON NITRIDE 145 4.5.3 CLATHRATE BA
8 SI 46 248 4.6 IXS IN THE INTERMEDIATE Q-RANGE 249 4.7 CONCLUDING
REMARKS 253 REFERENCES 255 5 HEAT CAPACITY OF SOLIDS 259 TOSHIHIDE TSUJI
5.1 INTRODUCTION 159 5.2 PRINCIPLES AND EXPERIMENTAL METHODS OF
CALORIMETRY 260 5.2.1 ADIABATIC HEAT CAPACITY CALORIMETRY 260 5.2.2
ADIABATIC SCANNING CALORIMETRY 262 5.2.3 DIRECT PULSE-HEATING
CALORIMETRY 265 5.2.4 LASER-FLASH CALORIMETRY 265 5.2.5 TEMPERATURE JUMP
CALORIMETRY 267 5.3 THERMODYNAMIC RELATION BETWEEN C P AND C V 168 5.4
DATA ANALYSIS OF HEAT CAPACITY AT CONSTANT VOLUME (C Y ) 270 5.4.1
LATTICE HEAT CAPACITY (Q 170 5.4.1.1 CLASSICAL THEORY OF LATTICE HEAT
CAPACITY 170 5.4.1.2 EINSTEIN'S MODEL OF LATTICE HEAT CAPACITY 272
5.4.1.3 DEBYE'S MODEL OF LATTICE HEAT CAPACITY 173 CONTENTS XI 5.6 PHASE
TRANSITION 288 5.6.1 SECOND-ORDER PHASE TRANSITION 288 5.6.1.1
ORDER-DISORDER PHASE TRANSITION DUE TO ATOMIC CONFIGURATION 188 5.6.1.2
ORDER-DISORDER PHASE TRANSITION DUE TO ORIENTATION IN ZRW 2 O 8 189
5.6.2 MAGNETIC ORDER-DISORDER PHASE TRANSITION 292 5.7 SUMMARY 292 5.7.1
HEAT CAPACITY MEASUREMENT 292 5.7.1.1 ADIABATIC HEAT CAPACITY
CALORIMETRY 192 5.7.1.2 TEMPERATURE JUMP CALORIMETRY 193 5.7.2
THERMODYNAMIC RELATION BETWEEN C P AND C V 293 5.7.3 ESTIMATION OF
NORMAL HEAT CAPACITY 193 5.7.3.1 NONMAGNETIC METALS AND ALLOYS AT LOW
TEMPERATURES 194 5.7.3.2 NONMETALS AND NON-ALLOYS WITHOUT MAGNETIC
TRANSITION AT LOW TEMPERATURES 2 94 5.7.3.3 FERROMAGNETIC AND
FERRIMAGNETIC MATERIALS AT LOW TEMPERATURES 294 5.7.3.4
ANTIFERROMAGNETIC MATERIALS AT LOW TEMPERATURES 294 5.7.3.5 METAL OXIDES
WITH FLUORITE-TYPE CRYSTAL STRUCTURE AT HIGH TEMPERATURES 294 5.7.4
SECOND-ORDER PHASE TRANSITION 195 5.7.4.1 ORDER-DISORDER PHASE
TRANSITION DUE TO ATOMIC CONFIGURATION 295 5.7.4.2 ORDER-DISORDER PHASE
TRANSITION DUE TO ORIENTATION IN ZRW 2 XII CONTENTS 6.8.5 PHASE
TRANSITIONS (MAGNETIC AND ELECTRONIC TRANSITIONS) 228 6.9 STRUCTURE AND
THERMAL EXPANSION 228 6.10 EXAMPLES 222 6.10.1 FLUORITE-TYPE AO 2
COMPOUNDS 221 6.10.1.1 ISOVALENT SUBSTITUTED AO 2 LATTICES 222 6.10.1.2
ALIOVALENT SUBSTITUTED AO 2 LATTICE 228 6.10.2 FRAMEWORK MATERIALS 232
6.10.2.1 CRISTOBALITE-TYPE AP0 4 (A = A1 3+ , GA 3+ , AND B 3+ ) 233
6.10.2.2 MOLYBDATES AND TUNGSTATES 239 6.10.3 SCHEELITE- AND ZIRCON-TYPE
ABO 4 COMPOUNDS 250 6.10.3.1 CAMOO 4 AND CAWO 4 250 6.10.3.2 LUPO 4 ,
LUVO 4 , AND GDVO 4 (ZIRCON TYPE) 253 6.11 CONCLUSION 259 REFERENCES 259
7 ELECTRONIC STRUCTURE AND HIGH-PRESSURE BEHAVIOR OF SOLIDS 269 CARLOS
MOYSES ARAUJO AND RAJEEV AHUJA 7. CONTENTS XIII 8.4.2 8.5 8.6 8.6.1
8.6.2 8.7 RAMAN 303 THERMODYNAMICAL PROPERTIES 306 EXAMPLES AND
APPLICATIONS 307 POLYMERIC NITROGEN 307 ICE X 309 CONCLUSIONS 322
REFERENCES 313 INDEX 327 |
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spellingShingle | Thermodynamic properties of solids experiment and modeling Solids Thermal properties Thermodynamics Thermodynamische Eigenschaft (DE-588)4126056-9 gnd Festkörper (DE-588)4016918-2 gnd |
subject_GND | (DE-588)4126056-9 (DE-588)4016918-2 (DE-588)4143413-4 |
title | Thermodynamic properties of solids experiment and modeling |
title_auth | Thermodynamic properties of solids experiment and modeling |
title_exact_search | Thermodynamic properties of solids experiment and modeling |
title_full | Thermodynamic properties of solids experiment and modeling ed. by Samrath L. Chaplot ... |
title_fullStr | Thermodynamic properties of solids experiment and modeling ed. by Samrath L. Chaplot ... |
title_full_unstemmed | Thermodynamic properties of solids experiment and modeling ed. by Samrath L. Chaplot ... |
title_short | Thermodynamic properties of solids |
title_sort | thermodynamic properties of solids experiment and modeling |
title_sub | experiment and modeling |
topic | Solids Thermal properties Thermodynamics Thermodynamische Eigenschaft (DE-588)4126056-9 gnd Festkörper (DE-588)4016918-2 gnd |
topic_facet | Solids Thermal properties Thermodynamics Thermodynamische Eigenschaft Festkörper Aufsatzsammlung |
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