相干光学:基础及应用(第2版)

相干光学:基础及应用(第2版)
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作者: [德] (Lauterborn.W) , [德] (Lauterborn.W)
出版社: 科学出版社
2011-06
版次: 1
ISBN: 9787030313942
定价: 88.00
装帧: 精装
开本: 16开
纸张: 胶版纸
页数: 346页
字数: 440千字
正文语种: 英语
分类: 自然科学
10人买过
  • 《相干光学:基础及应用(第2版)》内容涉及光学的不同领域,包括:干涉测量术,全息术,付里叶光学和非线性光学现象等。作为《相干光学:基础及应用(第2版)》的一大特色是作者把它们统一归纳到相干光学的范畴内,从相干性基本原理出发,详细论述了它们的理论和应用。书中提供了当代有关相干光学的最新研究成果,特别是有关非线性光学若干现代课题的研究进展。此外,作者在书中收集了大量例题,练习题包括它们完全解答,相信这将有助于读者加深知识的理解。为适应科学研究的飞速发展,《相干光学:基础及应用(第2版)》的这一完全修订版已经在原书基础上做了内容的更新和扩充。《相干光学:基础及应用(第2版)》是为工作在这一领域的研究生和高年级大学生写的,也是活跃在这一领域的科学工作者的一本很好的参考书。 1.HistoryofOptics
    1.1Past
    1.2Present
    1.3Future
    Problems
    2.TheMainAreasofOptics
    2.1GeometricalOptics
    2.2WaveOptics
    2.3QuantumOptics
    2.4StatisticalOptics
    3.FundamentalsofWaveOptics
    3.1Maxwell'sEquations
    3.2TheWaveEquation
    3.3Waves
    3.3.1One-DimensionalWaves
    3.3.2PlaneWaves
    3.3.3SphericalWaves
    3.3.4BesselWaves
    3.3.5EvanescentWaves
    3.3.6PolarizedWaves
    3.4IntensityofaLightWave
    Problems
    4.Coherence
    4.1TemporalCoherence
    4.2SpatialCoherence
    4.3SpatiotemporalCoherence
    4.4ComplexRepresentationoftheLightField
    4.5StellarInterferometry
    4.6FourierSpectroscopy
    4.7IntensityCorrelation
    Problems
    5.Multiple-BeamInterference
    5.1Fabry-PerotInterferometer
    5,2ModeSpectrumofaLaser
    5.2.1InterferenceSpectroscopy
    5.2.2Difference-FrequencyAnalysis
    5.3Dual-RecyclingInterferometer
    Problems
    6.Speckles
    6.1IntensityStatistics
    6,2SpeckleSizes
    6,3SpecklePhotography
    6.3.1Double-ExposureTechnique
    6.3,2Time-AverageTechnique
    6,4FlowDiagnostics
    6.5StellarSpeckleInterferometry
    Problems
    7.Holography
    7.1PrincipleofHolography
    7.1.1HologramRecording
    7.1.2ImageReconstruction
    7.1.3LocationoftheImages
    7.1,4PhaseConjugation
    7.2TheImagingEquationsofHolography
    7.3HolographicArrangements
    7.3.1In-lineHolograms
    7.3.2ReflectionHolograms
    7.3.3TransmissionHolograms
    7,3.4White-LightHolograms
    7.3.5RainbowHolograms
    7.4HolographicCinematography
    7.5DigitalHolography
    7,5,1DirectSimulation
    7.5.2SimulationwithSquareLightWaves
    7.5.3Digitalhologramrecordingandreconstruction.
    Problems
    8.Interferometry
    8.1Mach-ZehnderInterferometer
    8.2SagnacInterferometer
    8.3HolographicInterferometry
    8.3.1Real-TimeMethod
    8.3.2Double-ExposureMethod
    8.3.3Time-AverageMethod
    8.4TheoryofHolographicInterferometry
    8.4.1Real-TimeandDouble-ExposureMethod
    8.4.2Time-AverageMethod
    8.4.3Time-AverageMethodinRealTime
    Problems
    9.FourierOptics
    9.1ScalarDiffractionTheory
    9.1.1FresnelApproximation
    9.1.2FraunhoferApproximation
    9.2FourierTransformbyaLens
    9.3OpticalFourierSpectra
    9.3.1PointSource
    9.3.2PlaneWave
    9.3.3InfinitelyLongSlit
    9.3.4TwoPointSources
    9.3.5CosineGrating
    9.3.6CircularAperture
    9.3.7CompoundDiffractingSystems
    9.4CoherentOpticalFiltering
    9.4.1Low-PassFilterorSpatialFrequencyFilter
    9.4.2High-PassFilterorDarkFieldMethod
    9.4.3PhaseFilterorPhaseContrastMethod
    9.4.4Half-PlaneFilterorSchlierenMethod
    9.4.5RasterElimination
    9.4.6DemonstrationExperiment
    9.4.7HolographicFilters
    9.4.8PatternRecognition
    Problems
    10.TheLaser
    10.1TheLaserPrinciple
    10.2LaserRateEquations
    10.3StationaryOperation
    10.4StabilityAnalysis
    10.5Transientdynamics
    10.5.1RelaxationOscillations
    10.5.2Q-Switching
    10.5.3CavityDumping
    10.6ChaoticDynamics
    10.7Synchronization
    Problems
    11.UltrafastOptics
    11.1PropertiesofUltrashortPulses
    11.1.1Time-BandwidthProduct
    11.1.2ChirpedPulses
    11.2GenerationofUltrashortPulses
    11.2.1PrincipleofModeLocking
    11.2.2MethodsofModeLocking
    11.2.3Sonoluminescence
    11.2.4ChirpedPulseAmplification
    11.3MeasurementofUltrashortPulses
    11.4OpticalGating
    11.5OpticalCoherenceTomography
    Problems
    12.NonlinearOptics
    12.1Two-WaveInteraction
    12.1.1Two-PhotonAbsorption
    12.1.2Two-PhotonIonization
    12.2Three-WaveInteraction
    12.2.1Second-HarmonicGeneration
    12.2.2Sum-FrequencyGeneration
    12.2.3Difference-FrequencyGeneration
    12.2.4OpticalParametricAmplifier
    12.3Four-WaveInteraction
    12.4Multi-photonInteraction
    12.4.1FrequencyMultiplication
    12.4.2Multi-photonAbsorptionandIonization
    12.5FurtherNonlinearOpticalPhenomena
    12.6NonlinearPotentials
    12.7InteractionofLightWaves
    12.7.1Three-WaveInteraciion
    12.7.2ScalarThree-WaveInteraction
    12.7.3Second-HarmonicGeneration
    12.7.4OpticalParametricAmplifier
    12.7.5OpticalParametricOscillator
    12.7.6Three-WaveInteractioninthePhotonPicture.
    Problems
    13.FiberOptics
    13.1GlassFibers
    13.1.1Profile
    13.1.2GuidedWaves
    13.1.3Attenuation
    13.2FiberSensors
    13.3OpticalSolitons
    13.3.1Dispersion
    13.3.2Nonlinearity
    13.4Fiber-OpticSignalProcessing
    Problems
    A.TheFourierTransform
    A.1One-DimensionalFourierTransform
    A.2Two-DimensionalFourierTransform
    A.3ConvolutionandAutocorrelation
    A.4PropertiesoftheFourierTransform
    A.5SelectedFunctionsandTheirFourierTransforms
    Problems
    B.SolutionsofProblems
    References
    Index
  • 内容简介:
    《相干光学:基础及应用(第2版)》内容涉及光学的不同领域,包括:干涉测量术,全息术,付里叶光学和非线性光学现象等。作为《相干光学:基础及应用(第2版)》的一大特色是作者把它们统一归纳到相干光学的范畴内,从相干性基本原理出发,详细论述了它们的理论和应用。书中提供了当代有关相干光学的最新研究成果,特别是有关非线性光学若干现代课题的研究进展。此外,作者在书中收集了大量例题,练习题包括它们完全解答,相信这将有助于读者加深知识的理解。为适应科学研究的飞速发展,《相干光学:基础及应用(第2版)》的这一完全修订版已经在原书基础上做了内容的更新和扩充。《相干光学:基础及应用(第2版)》是为工作在这一领域的研究生和高年级大学生写的,也是活跃在这一领域的科学工作者的一本很好的参考书。
  • 目录:
    1.HistoryofOptics
    1.1Past
    1.2Present
    1.3Future
    Problems
    2.TheMainAreasofOptics
    2.1GeometricalOptics
    2.2WaveOptics
    2.3QuantumOptics
    2.4StatisticalOptics
    3.FundamentalsofWaveOptics
    3.1Maxwell'sEquations
    3.2TheWaveEquation
    3.3Waves
    3.3.1One-DimensionalWaves
    3.3.2PlaneWaves
    3.3.3SphericalWaves
    3.3.4BesselWaves
    3.3.5EvanescentWaves
    3.3.6PolarizedWaves
    3.4IntensityofaLightWave
    Problems
    4.Coherence
    4.1TemporalCoherence
    4.2SpatialCoherence
    4.3SpatiotemporalCoherence
    4.4ComplexRepresentationoftheLightField
    4.5StellarInterferometry
    4.6FourierSpectroscopy
    4.7IntensityCorrelation
    Problems
    5.Multiple-BeamInterference
    5.1Fabry-PerotInterferometer
    5,2ModeSpectrumofaLaser
    5.2.1InterferenceSpectroscopy
    5.2.2Difference-FrequencyAnalysis
    5.3Dual-RecyclingInterferometer
    Problems
    6.Speckles
    6.1IntensityStatistics
    6,2SpeckleSizes
    6,3SpecklePhotography
    6.3.1Double-ExposureTechnique
    6.3,2Time-AverageTechnique
    6,4FlowDiagnostics
    6.5StellarSpeckleInterferometry
    Problems
    7.Holography
    7.1PrincipleofHolography
    7.1.1HologramRecording
    7.1.2ImageReconstruction
    7.1.3LocationoftheImages
    7.1,4PhaseConjugation
    7.2TheImagingEquationsofHolography
    7.3HolographicArrangements
    7.3.1In-lineHolograms
    7.3.2ReflectionHolograms
    7.3.3TransmissionHolograms
    7,3.4White-LightHolograms
    7.3.5RainbowHolograms
    7.4HolographicCinematography
    7.5DigitalHolography
    7,5,1DirectSimulation
    7.5.2SimulationwithSquareLightWaves
    7.5.3Digitalhologramrecordingandreconstruction.
    Problems
    8.Interferometry
    8.1Mach-ZehnderInterferometer
    8.2SagnacInterferometer
    8.3HolographicInterferometry
    8.3.1Real-TimeMethod
    8.3.2Double-ExposureMethod
    8.3.3Time-AverageMethod
    8.4TheoryofHolographicInterferometry
    8.4.1Real-TimeandDouble-ExposureMethod
    8.4.2Time-AverageMethod
    8.4.3Time-AverageMethodinRealTime
    Problems
    9.FourierOptics
    9.1ScalarDiffractionTheory
    9.1.1FresnelApproximation
    9.1.2FraunhoferApproximation
    9.2FourierTransformbyaLens
    9.3OpticalFourierSpectra
    9.3.1PointSource
    9.3.2PlaneWave
    9.3.3InfinitelyLongSlit
    9.3.4TwoPointSources
    9.3.5CosineGrating
    9.3.6CircularAperture
    9.3.7CompoundDiffractingSystems
    9.4CoherentOpticalFiltering
    9.4.1Low-PassFilterorSpatialFrequencyFilter
    9.4.2High-PassFilterorDarkFieldMethod
    9.4.3PhaseFilterorPhaseContrastMethod
    9.4.4Half-PlaneFilterorSchlierenMethod
    9.4.5RasterElimination
    9.4.6DemonstrationExperiment
    9.4.7HolographicFilters
    9.4.8PatternRecognition
    Problems
    10.TheLaser
    10.1TheLaserPrinciple
    10.2LaserRateEquations
    10.3StationaryOperation
    10.4StabilityAnalysis
    10.5Transientdynamics
    10.5.1RelaxationOscillations
    10.5.2Q-Switching
    10.5.3CavityDumping
    10.6ChaoticDynamics
    10.7Synchronization
    Problems
    11.UltrafastOptics
    11.1PropertiesofUltrashortPulses
    11.1.1Time-BandwidthProduct
    11.1.2ChirpedPulses
    11.2GenerationofUltrashortPulses
    11.2.1PrincipleofModeLocking
    11.2.2MethodsofModeLocking
    11.2.3Sonoluminescence
    11.2.4ChirpedPulseAmplification
    11.3MeasurementofUltrashortPulses
    11.4OpticalGating
    11.5OpticalCoherenceTomography
    Problems
    12.NonlinearOptics
    12.1Two-WaveInteraction
    12.1.1Two-PhotonAbsorption
    12.1.2Two-PhotonIonization
    12.2Three-WaveInteraction
    12.2.1Second-HarmonicGeneration
    12.2.2Sum-FrequencyGeneration
    12.2.3Difference-FrequencyGeneration
    12.2.4OpticalParametricAmplifier
    12.3Four-WaveInteraction
    12.4Multi-photonInteraction
    12.4.1FrequencyMultiplication
    12.4.2Multi-photonAbsorptionandIonization
    12.5FurtherNonlinearOpticalPhenomena
    12.6NonlinearPotentials
    12.7InteractionofLightWaves
    12.7.1Three-WaveInteraciion
    12.7.2ScalarThree-WaveInteraction
    12.7.3Second-HarmonicGeneration
    12.7.4OpticalParametricAmplifier
    12.7.5OpticalParametricOscillator
    12.7.6Three-WaveInteractioninthePhotonPicture.
    Problems
    13.FiberOptics
    13.1GlassFibers
    13.1.1Profile
    13.1.2GuidedWaves
    13.1.3Attenuation
    13.2FiberSensors
    13.3OpticalSolitons
    13.3.1Dispersion
    13.3.2Nonlinearity
    13.4Fiber-OpticSignalProcessing
    Problems
    A.TheFourierTransform
    A.1One-DimensionalFourierTransform
    A.2Two-DimensionalFourierTransform
    A.3ConvolutionandAutocorrelation
    A.4PropertiesoftheFourierTransform
    A.5SelectedFunctionsandTheirFourierTransforms
    Problems
    B.SolutionsofProblems
    References
    Index
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