结构相变物理(影印版)

结构相变物理(影印版)
分享
扫描下方二维码分享到微信
打开微信,点击右上角”+“,
使用”扫一扫“即可将网页分享到朋友圈。
作者: [日]
出版社: 科学出版社
2009-01
版次: 1
ISBN: 9787030236258
定价: 58.00
装帧: 精装
开本: 16开
纸张: 胶版纸
页数: 277页
字数: 349千字
正文语种: 英语
分类: 自然科学
  •   反映的是结构相变物理领域的前沿进展和热点,具有权威性、前瞻性和应用性强的特点,对有关方向的科研人员和研究生有重要的参考价值。为了满足国内读者对国外优秀物理学著作的需求,科学出版社启动了引进国外优秀著作的工作,这些图书几乎涉及了近代物理学的所有领域,既有阐述学科基本理论的经典名著,也有反映某一学科专题前沿的专著。 PrefacetotheSecondEdition
    PrefacetotheFirstEdition
    PartIBasicConcepts
    1ThermodynamicalPrinciplesandtheLandauTheory
    1.1Introduction
    1.2PhaseEquilibriainIsotropicSystems
    1.3PhaseDiagramsandMetastableStates
    1.4ThevanderWaalsEquationofState
    1.5Second-OrderPhaseTransitionsandtheLandauTheory
    1.5.1TheEhrenfestClassification
    1.5.2TheLandauTheory
    1.6SusceptibilitiesandtheWeissField
    1.6.1SusceptibilityofanOrderParameter
    1.6.2TheWeissFieldinaFerromagneticDomain
    1.7CriticalAnomalies,BeyondClassicalThermodynamics
    1.8RemarksonCriticalExponents
    2OrderVariables,TheirCorrelationsandStatisticstheMean-FieldTheory
    2.1OrderVariables
    2.2Probabilities,ShortandLong-RangeCorrelations,andtheMean-FieldApproximation
    2.2.1Probabilities
    2.2.2TheConceptofaMeanField
    2.3StatisticalMechanicsofanOrder-DisorderTransition
    2.4TheIsingModelforSpin-SpinCorrelations
    2.5TheRoleoftheWeissFieldinanOrderingProcess
    3CollectiveModesofPseudospinsinDisplaciveCrystalsandtheBorn-HuangTheory
    3.1DisplaciveCrystals
    3.2TheLandauCriterionforClassicalFluctuations
    3.3Quantum-MechanicalPseudospinsandtheirCorrelatiOns
    3.4TheBorn-HuangTheoryandStructuralOrderinginCrystals
    3.5CollectivePseudospinModesinDisplaciveSystems
    3.6ExamplesofCollectivePseudospinModes
    3.6.1StrontiumTitanateandRelatedPerovskites
    3.6.2Tris-SacosineCalciumChlorideandRelatedCrystals
    3.7TheVariationPrincipleandtheWeissSingularity
    4SoftModes,LatticeAnharmonicityandPseudospinCondensatesintheCriticalRegion
    4.1TheCriticalModulation
    4.2TheLyddane-Sachs-TellerRelation
    4.3Long-RangeInteractionsandtheCochranTheory
    4.4TheQuarticAnharmonicPotentialintheCriticalRegion
    4.4.1TheCowleyTheoryofModeSoftening
    4.4.2SymmetryChangeataContinuousPhaseTransition
    4.5ObservationofSoft-ModeSpectra
    4.6TheCentralPeak
    4.7Symmetry-BreakingFluctuationsinBinaryPhaseTransitions
    4.8MacroscopicObservationofaBinaryPhaseTransition;λ-anomalyoftheSpecificHeat
    5DynamicsofPseudospinsCondensatesandtheLong-RangeOrder
    5.1ImperfectionsinPracticalCrystals
    5.2ThePinningPotential.
    5.3TheLifshitzConditionforIncommensurateFluctuations
    5.4APseudopotentialforCondensateLockingandCommensurateModulation
    5.5PropagationofaCollectivePseudospinMode
    5.6AHydrodynamicModelforPseudospinPropagation
    5.7TheKorteweg-deVriesEquation
    5.7.1GeneralDerivation
    5.7.2SolutionsoftheKorteweg-deVriesEquation
    5.8SolitonPotentialsandtheLong-RangeOrder
    5.9ModeStabilizationbytheEckartPotential
    PartIIExperimentalStudies
    6DiffuseX-rayDiffractionandNeutronInelasticScatteringfromModulatedCrystals
    6.1ModulatedCrystals
    6.2TheBraggLawofX-rayDiffraction
    6.3DiffuseDiffractionfromWeaklyModulatedCrystals
    6.4TheLaueFormulaandDiffuseDiffractionfromPerovskites
    6.5NeutronInelasticScattering
    7LightScatteringandDielectricStudiesonStructuralPhaseTransitions
    7.1RamanScatteringStudiesonStructuralTransitions
    7.2RayleighandBrillouinScatterings
    7.3DielectricRelaxation
    7.4DielectricSpectraintheFerroelectricPhaseTransitionofTSCC
    8TheSpin-HamiltonianandMagneticResonanceSpectroscopy
    8.1Introduction
    8.2PrinciplesofMagneticResonanceandRelaxation
    8.3MagneticResonanceSpectrometers
    8.4TheCrystallinePotential
    8.5TheZeemanEnergyandthegTensor
    8.6TheFineStructure
    8.7HyperfineInteractionsandForbiddenTransitions
    9MagneticResonanceSamplingandNuclearSpinRelaxationStudiesonModulatedCrystals
    9.1ParamagneticProbesinaModulatedCrystal
    9.2Thespin-HamiltonianinModulatedCrystals
    9.2.1ThegTensorAnomaly
    9.2.2TheHyperfineStructureAnomaly
    9.2.3TheFine-StructureAnomaly
    9.3StructuralPhaseTransitionsinTSCCandBCCDCrystalsasStudiedbyParamagneticResonanceSpectra
    9.3.1TheFerroelectricPhaseTransitioninTSCCCrystals
    9.3.2StructuralPhaseTransitionsinBCCDCrystals
    9.4NuclearQuadrupoleRelaxationinIncommensuratePhases
    10StructuralPhaseTransitionsinMiscellaneousSystems
    10.1Cell-DoublingTransitionsinOxidePerovskites
    10.2TheIncommensuratePhaseinβ-ThoriumTetrabromide
    10.3PhaseTransitionsinDeuteratedBiphenylCrystals
    10.4SuccessivePhaseTransitionsinA2BX4FamilyCrystals
    10.5IncommensuratePhasesinRbH3(SeO3)2andRelatedCrystals
    10.6PhaseTransitionsin(NH4)2SO4andNH4AlF4
    10.7ProtonOrderinginHydrogen-BondedCrystals
    Epilogue
    AppendixTheAdiabaticApproximation
    Index
  • 内容简介:
      反映的是结构相变物理领域的前沿进展和热点,具有权威性、前瞻性和应用性强的特点,对有关方向的科研人员和研究生有重要的参考价值。为了满足国内读者对国外优秀物理学著作的需求,科学出版社启动了引进国外优秀著作的工作,这些图书几乎涉及了近代物理学的所有领域,既有阐述学科基本理论的经典名著,也有反映某一学科专题前沿的专著。
  • 目录:
    PrefacetotheSecondEdition
    PrefacetotheFirstEdition
    PartIBasicConcepts
    1ThermodynamicalPrinciplesandtheLandauTheory
    1.1Introduction
    1.2PhaseEquilibriainIsotropicSystems
    1.3PhaseDiagramsandMetastableStates
    1.4ThevanderWaalsEquationofState
    1.5Second-OrderPhaseTransitionsandtheLandauTheory
    1.5.1TheEhrenfestClassification
    1.5.2TheLandauTheory
    1.6SusceptibilitiesandtheWeissField
    1.6.1SusceptibilityofanOrderParameter
    1.6.2TheWeissFieldinaFerromagneticDomain
    1.7CriticalAnomalies,BeyondClassicalThermodynamics
    1.8RemarksonCriticalExponents
    2OrderVariables,TheirCorrelationsandStatisticstheMean-FieldTheory
    2.1OrderVariables
    2.2Probabilities,ShortandLong-RangeCorrelations,andtheMean-FieldApproximation
    2.2.1Probabilities
    2.2.2TheConceptofaMeanField
    2.3StatisticalMechanicsofanOrder-DisorderTransition
    2.4TheIsingModelforSpin-SpinCorrelations
    2.5TheRoleoftheWeissFieldinanOrderingProcess
    3CollectiveModesofPseudospinsinDisplaciveCrystalsandtheBorn-HuangTheory
    3.1DisplaciveCrystals
    3.2TheLandauCriterionforClassicalFluctuations
    3.3Quantum-MechanicalPseudospinsandtheirCorrelatiOns
    3.4TheBorn-HuangTheoryandStructuralOrderinginCrystals
    3.5CollectivePseudospinModesinDisplaciveSystems
    3.6ExamplesofCollectivePseudospinModes
    3.6.1StrontiumTitanateandRelatedPerovskites
    3.6.2Tris-SacosineCalciumChlorideandRelatedCrystals
    3.7TheVariationPrincipleandtheWeissSingularity
    4SoftModes,LatticeAnharmonicityandPseudospinCondensatesintheCriticalRegion
    4.1TheCriticalModulation
    4.2TheLyddane-Sachs-TellerRelation
    4.3Long-RangeInteractionsandtheCochranTheory
    4.4TheQuarticAnharmonicPotentialintheCriticalRegion
    4.4.1TheCowleyTheoryofModeSoftening
    4.4.2SymmetryChangeataContinuousPhaseTransition
    4.5ObservationofSoft-ModeSpectra
    4.6TheCentralPeak
    4.7Symmetry-BreakingFluctuationsinBinaryPhaseTransitions
    4.8MacroscopicObservationofaBinaryPhaseTransition;λ-anomalyoftheSpecificHeat
    5DynamicsofPseudospinsCondensatesandtheLong-RangeOrder
    5.1ImperfectionsinPracticalCrystals
    5.2ThePinningPotential.
    5.3TheLifshitzConditionforIncommensurateFluctuations
    5.4APseudopotentialforCondensateLockingandCommensurateModulation
    5.5PropagationofaCollectivePseudospinMode
    5.6AHydrodynamicModelforPseudospinPropagation
    5.7TheKorteweg-deVriesEquation
    5.7.1GeneralDerivation
    5.7.2SolutionsoftheKorteweg-deVriesEquation
    5.8SolitonPotentialsandtheLong-RangeOrder
    5.9ModeStabilizationbytheEckartPotential
    PartIIExperimentalStudies
    6DiffuseX-rayDiffractionandNeutronInelasticScatteringfromModulatedCrystals
    6.1ModulatedCrystals
    6.2TheBraggLawofX-rayDiffraction
    6.3DiffuseDiffractionfromWeaklyModulatedCrystals
    6.4TheLaueFormulaandDiffuseDiffractionfromPerovskites
    6.5NeutronInelasticScattering
    7LightScatteringandDielectricStudiesonStructuralPhaseTransitions
    7.1RamanScatteringStudiesonStructuralTransitions
    7.2RayleighandBrillouinScatterings
    7.3DielectricRelaxation
    7.4DielectricSpectraintheFerroelectricPhaseTransitionofTSCC
    8TheSpin-HamiltonianandMagneticResonanceSpectroscopy
    8.1Introduction
    8.2PrinciplesofMagneticResonanceandRelaxation
    8.3MagneticResonanceSpectrometers
    8.4TheCrystallinePotential
    8.5TheZeemanEnergyandthegTensor
    8.6TheFineStructure
    8.7HyperfineInteractionsandForbiddenTransitions
    9MagneticResonanceSamplingandNuclearSpinRelaxationStudiesonModulatedCrystals
    9.1ParamagneticProbesinaModulatedCrystal
    9.2Thespin-HamiltonianinModulatedCrystals
    9.2.1ThegTensorAnomaly
    9.2.2TheHyperfineStructureAnomaly
    9.2.3TheFine-StructureAnomaly
    9.3StructuralPhaseTransitionsinTSCCandBCCDCrystalsasStudiedbyParamagneticResonanceSpectra
    9.3.1TheFerroelectricPhaseTransitioninTSCCCrystals
    9.3.2StructuralPhaseTransitionsinBCCDCrystals
    9.4NuclearQuadrupoleRelaxationinIncommensuratePhases
    10StructuralPhaseTransitionsinMiscellaneousSystems
    10.1Cell-DoublingTransitionsinOxidePerovskites
    10.2TheIncommensuratePhaseinβ-ThoriumTetrabromide
    10.3PhaseTransitionsinDeuteratedBiphenylCrystals
    10.4SuccessivePhaseTransitionsinA2BX4FamilyCrystals
    10.5IncommensuratePhasesinRbH3(SeO3)2andRelatedCrystals
    10.6PhaseTransitionsin(NH4)2SO4andNH4AlF4
    10.7ProtonOrderinginHydrogen-BondedCrystals
    Epilogue
    AppendixTheAdiabaticApproximation
    Index
查看详情