传感材料与传感技术丛书·化学传感器:仿真与建模(第4卷·光学传感器 下册 影印版)
作者:
[摩尔多瓦] 科瑞特森科韦
(Korotcenkov G.) 编
出版时间:
2015-01
版次:
1
ISBN:
9787560349077
定价:
90.00
装帧:
平装
开本:
16开
纸张:
胶版纸
页数:
502页
正文语种:
英语
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MomentumPressisProudtobringtoyouChemicalSensors:SimulationandModelingVolume4:OpticalSensors,editedbyGhenadiiKoroteenkov.Thisisthefourthofanewmulti-volumecomprehensivereferenceworkthatprovidescomputersimulationandmodelingtechniquesinvariousfields
ofchemicalsensingandtheimportantapplicationsforchemicalsensingsuchasbulkandsurfaccdiffusion,adsorption,surfacereactions,sintering,conductivity,masstransport,andinterphascinteractions. GhenadiiKorotcenkov,receivedhisPh.D.inPhysicsandTechnologyofSemiconductorMaterialsandDevicesin1976,andhisHabilitateDegree(Dr.Sci.)inPhysicsandMathematicsofSemiconductorsandDielectricsin1990.ForalongtimehewasaleaderofthescientificGasSensorGroupandmanagerofvariousnationalandinternationalscientificandengineeringprojectscarriedoutintheLaboratoryofMicro-andOptoelectronics,TechnicalUniversityofMoldova.Currently,Dr.KorotcenkovisaresearchprofessorattheGwangjuInstituteofScienceandTechnology,RepublicofKorea.
SpecialistsfromtheformerSovietUnionknowDr.Korotcenkov'sresearchresultsinthefieldofstudyofSchottkybarriers,MOSstructures,nativeoxides,andphotoreceiversbasedonGroupIIIH-Vcompoundsverywell.Hiscurrentresearchinterestsincludematerialsscienceandsurfacescience,focusedonnanostructuredmetaloxidesandsolid-stategassensordesign.Dr.Korotcenkovistheauthororeditorof11booksandspecialissues,11invitedreviewpapers,17bookchapters,andmorethan190peer-reviewedarticles.Heholds18patents,andhehaspresentedmorethan200reportsatnationalandinternationalconferences.
Dr.Korotcenkov'sresearchactivitieshavebeenhonoredbyanAwardoftheSupremeCouncilofScienceandAdvancedTechnologyoftheRepublicofMoldova(2004),ThePrizeofthePresidentsoftheUkrainian,Belarus,andMoldovanAcademiesofSciences(2003),SeniorResearchExcellenceAwardsfromtheTechnicalUniversityofMoldova(2001,2003,2005),afellowshipfromtheInternationalResearchExchangeBoard(1998),andtheNationalYouthPrizeoftheRepublicofMoldova(1980),amongothers. PREFACE
ABOUTTHEEDITOR
CONTRIBUTORS
7NOVELLONG-PERIODFIBERGRATINGSENSORBASEDONDUAL-PEAKRESONANCEANDSPR
1Introduction
2DualPeakResonanceinCoatedLPFG
2.1CoupledTheoreticalAnalysisofCoatedLPFG
2.2DeterminationofDualResonanceWavelengths
2.3TransmissionCharacteristicsofDualResonanceLPFG
3ModelAnalysisOfSPR-BasedLPFGwithMetalCoating
3.1EstablishingtheComplexCharacteristicEquation
3.2EquationSolutionMethod
3.3IntensityProfileofCladdingMode
4OptimizationofCoatedLPFGSensorBasedonDPRandSPR
4.1DefinitionofSensorSensitivity
4.2OptimizationofDesignofLPFGSensors
5DispersioninMetal-CoatedLPFGSensors
5.1DispersionExpression
5.2MaterialDispersionInfluenceonResonanceCharacteristics
5.3JumpRegioninResponseofResonanceWavelength
5.4OptimizationBasedonConsiderationofDispersion
6Conclusion
Acknowledgments
References
8ANALYTICALAPPROACHESTOOPTIMIZATIONOFGASDETECTIONUSINGFABRY-PEROTINTERFEROMETERS
1Introduction
1.1GasSensorDesign
2TheNarrow-GapFPIGasSensor
2.1SensorResponseandtheCross-CorrelationSpectroscopyPrinciple
2.2OptimalFPIMirrorRefiectivity
2.3MultipleGasSensorsBasedontheNarrow-GapDesign
2.4Narrow-GapSensorDesignwithaNarrowBand-PassFilter
2.5Narrow-GapSensorDesignandMEMS
3TheWide-GapFPIGasSensor
3.1TheConvolutionMethod
4InternalReflectionEffects
5Conclusions
References
9SPECTROSCOPICMODELINGOFMID-INFRAREDCHEMICALSENSORS
1Introduction
2Example#1:Accessingthe"Active"SensingRegionsofanATRElementviaRayTracing
3Example#2:SensorResponseSimulation-TowardVirtual
Calibrations
3.1ExperimentalSpectraAcquisition
3.2DielectricFunctionModeling
3.3ModelEstablishmentandValidation
3.4SensorResponseSimulation
3.5SpectrumPrediction
4Example#3:ExtendedApplications
4.1ExplorationoftheSourcesofDeviationsinBeer'sLawPlots
4.2OpticalToleranceStudyI:AssessingtheIn-CouplingRatio-SharpnessoftheFocalPoint
10FINITE-ELEMENTMODELINGOFINFRAREDSENSORS
11DESIGNANDOPTIMIZATIONOFOPTICALGASSENSORSYSTEMS
12SIMULATIONANDMODELINGFOROPTICALDESIGNOFLASERREMOTESENSINGFORGASMEASUREMENTS
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内容简介:
MomentumPressisProudtobringtoyouChemicalSensors:SimulationandModelingVolume4:OpticalSensors,editedbyGhenadiiKoroteenkov.Thisisthefourthofanewmulti-volumecomprehensivereferenceworkthatprovidescomputersimulationandmodelingtechniquesinvariousfields
ofchemicalsensingandtheimportantapplicationsforchemicalsensingsuchasbulkandsurfaccdiffusion,adsorption,surfacereactions,sintering,conductivity,masstransport,andinterphascinteractions.
-
作者简介:
GhenadiiKorotcenkov,receivedhisPh.D.inPhysicsandTechnologyofSemiconductorMaterialsandDevicesin1976,andhisHabilitateDegree(Dr.Sci.)inPhysicsandMathematicsofSemiconductorsandDielectricsin1990.ForalongtimehewasaleaderofthescientificGasSensorGroupandmanagerofvariousnationalandinternationalscientificandengineeringprojectscarriedoutintheLaboratoryofMicro-andOptoelectronics,TechnicalUniversityofMoldova.Currently,Dr.KorotcenkovisaresearchprofessorattheGwangjuInstituteofScienceandTechnology,RepublicofKorea.
SpecialistsfromtheformerSovietUnionknowDr.Korotcenkov'sresearchresultsinthefieldofstudyofSchottkybarriers,MOSstructures,nativeoxides,andphotoreceiversbasedonGroupIIIH-Vcompoundsverywell.Hiscurrentresearchinterestsincludematerialsscienceandsurfacescience,focusedonnanostructuredmetaloxidesandsolid-stategassensordesign.Dr.Korotcenkovistheauthororeditorof11booksandspecialissues,11invitedreviewpapers,17bookchapters,andmorethan190peer-reviewedarticles.Heholds18patents,andhehaspresentedmorethan200reportsatnationalandinternationalconferences.
Dr.Korotcenkov'sresearchactivitieshavebeenhonoredbyanAwardoftheSupremeCouncilofScienceandAdvancedTechnologyoftheRepublicofMoldova(2004),ThePrizeofthePresidentsoftheUkrainian,Belarus,andMoldovanAcademiesofSciences(2003),SeniorResearchExcellenceAwardsfromtheTechnicalUniversityofMoldova(2001,2003,2005),afellowshipfromtheInternationalResearchExchangeBoard(1998),andtheNationalYouthPrizeoftheRepublicofMoldova(1980),amongothers.
-
目录:
PREFACE
ABOUTTHEEDITOR
CONTRIBUTORS
7NOVELLONG-PERIODFIBERGRATINGSENSORBASEDONDUAL-PEAKRESONANCEANDSPR
1Introduction
2DualPeakResonanceinCoatedLPFG
2.1CoupledTheoreticalAnalysisofCoatedLPFG
2.2DeterminationofDualResonanceWavelengths
2.3TransmissionCharacteristicsofDualResonanceLPFG
3ModelAnalysisOfSPR-BasedLPFGwithMetalCoating
3.1EstablishingtheComplexCharacteristicEquation
3.2EquationSolutionMethod
3.3IntensityProfileofCladdingMode
4OptimizationofCoatedLPFGSensorBasedonDPRandSPR
4.1DefinitionofSensorSensitivity
4.2OptimizationofDesignofLPFGSensors
5DispersioninMetal-CoatedLPFGSensors
5.1DispersionExpression
5.2MaterialDispersionInfluenceonResonanceCharacteristics
5.3JumpRegioninResponseofResonanceWavelength
5.4OptimizationBasedonConsiderationofDispersion
6Conclusion
Acknowledgments
References
8ANALYTICALAPPROACHESTOOPTIMIZATIONOFGASDETECTIONUSINGFABRY-PEROTINTERFEROMETERS
1Introduction
1.1GasSensorDesign
2TheNarrow-GapFPIGasSensor
2.1SensorResponseandtheCross-CorrelationSpectroscopyPrinciple
2.2OptimalFPIMirrorRefiectivity
2.3MultipleGasSensorsBasedontheNarrow-GapDesign
2.4Narrow-GapSensorDesignwithaNarrowBand-PassFilter
2.5Narrow-GapSensorDesignandMEMS
3TheWide-GapFPIGasSensor
3.1TheConvolutionMethod
4InternalReflectionEffects
5Conclusions
References
9SPECTROSCOPICMODELINGOFMID-INFRAREDCHEMICALSENSORS
1Introduction
2Example#1:Accessingthe"Active"SensingRegionsofanATRElementviaRayTracing
3Example#2:SensorResponseSimulation-TowardVirtual
Calibrations
3.1ExperimentalSpectraAcquisition
3.2DielectricFunctionModeling
3.3ModelEstablishmentandValidation
3.4SensorResponseSimulation
3.5SpectrumPrediction
4Example#3:ExtendedApplications
4.1ExplorationoftheSourcesofDeviationsinBeer'sLawPlots
4.2OpticalToleranceStudyI:AssessingtheIn-CouplingRatio-SharpnessoftheFocalPoint
10FINITE-ELEMENTMODELINGOFINFRAREDSENSORS
11DESIGNANDOPTIMIZATIONOFOPTICALGASSENSORSYSTEMS
12SIMULATIONANDMODELINGFOROPTICALDESIGNOFLASERREMOTESENSINGFORGASMEASUREMENTS
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Chemical sensors
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