包郵 納米光子學(xué)叢書(shū)納米光子學(xué)與光譜/孫萌濤 NANOSCALE PHOTONICS AND SPECTROSCOPY
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納米光子學(xué)叢書(shū)納米光子學(xué)與光譜/孫萌濤 NANOSCALE PHOTONICS AND SPECTROSCOPY 版權(quán)信息
- ISBN:9787302539186
- 條形碼:9787302539186 ; 978-7-302-53918-6
- 裝幀:平裝-膠訂
- 冊(cè)數(shù):暫無(wú)
- 重量:暫無(wú)
- 所屬分類(lèi):>>
納米光子學(xué)叢書(shū)納米光子學(xué)與光譜/孫萌濤 NANOSCALE PHOTONICS AND SPECTROSCOPY 本書(shū)特色
本書(shū)詳細(xì)介紹了納米光子和光譜的原理和應(yīng)用。首先通過(guò)高真空尖端增強(qiáng)拉曼光譜儀揭示了表面等離激元增強(qiáng)的線(xiàn)性拉曼光譜的物理機(jī)制,然后詳細(xì)介紹了表面等離激元增強(qiáng)的非線(xiàn)性拉曼光譜的實(shí)驗(yàn)和理論研究,以及雙光子激發(fā)熒光和二次諧波產(chǎn)生信號(hào)的原位同步測(cè)量。本書(shū)物理概念清晰詳細(xì),全面介紹了本領(lǐng)域的*研究成果。本書(shū)可作為科研院所和大學(xué)科研工作者從事本領(lǐng)域科學(xué)研究的參考資料,也可作為物理系專(zhuān)業(yè)研究生和高年級(jí)本科生學(xué)習(xí)納米光子學(xué)領(lǐng)域的參考書(shū)。
納米光子學(xué)叢書(shū)納米光子學(xué)與光譜/孫萌濤 NANOSCALE PHOTONICS AND SPECTROSCOPY 內(nèi)容簡(jiǎn)介
本書(shū)詳細(xì)介紹了納米光子和光譜的原理和應(yīng)用。首先通過(guò)高真空很好增強(qiáng)拉曼光譜儀揭示了表面等離激元增強(qiáng)的線(xiàn)性拉曼光譜的物理機(jī)制,然后詳細(xì)介紹了表面等離激元增強(qiáng)的非線(xiàn)性拉曼光譜的實(shí)驗(yàn)和理論研究,以及雙光子激發(fā)熒光和二次諧波產(chǎn)生信號(hào)的原位同步測(cè)量。本書(shū)物理概念清晰詳細(xì),全面介紹了本領(lǐng)域的近期新研究成果。本書(shū)可作為科研院所和大學(xué)科研工作者從事本領(lǐng)域科學(xué)研究的參考資料,也可作為物理系專(zhuān)業(yè)研究生和高年級(jí)本科生學(xué)習(xí)納米光子學(xué)領(lǐng)域的參考書(shū)。
納米光子學(xué)叢書(shū)納米光子學(xué)與光譜/孫萌濤 NANOSCALE PHOTONICS AND SPECTROSCOPY 目錄
CHAPTER 1Introduction 1.1Concept of Spectroscopy 1.2Concept of Photonics and Plasmonics 1.3Concept of PlasmonEnhanced Spectroscopy 1.3.1Plasmonenhanced fluorescence 1.3.2Plasmonenhanced resonance fluorescence energy
transfer 1.3.3Surfaceenhanced Raman scattering 1.3.4The remoteexcitation of SERS 1.3.5Tipenhanced Raman scattering spectroscopy 1.3.6Remote excitationTERS microscopy 1.3.7Plasmonenhanced coherence antiStokes
Raman scattering images References CHAPTER 2Molecular Spectroscopy 2.1Jablonski Diagram 2.2Electronic State Transition 2.2.1Ultravioletvisiblenear IR absorption
spectroscopy 2.2.2Twophoton absorption spectroscopy 2.2.3Fluorescence spectroscopy 2.2.4Fluorescence resonance energy transfer 2.3Vibration Spectroscopy 2.3.1Raman spectroscopy 2.3.2Infrared spectroscopy 2.3.3Modes of molecular vibration 2.3.4The difference between Raman and spectra 2.4Rotational State 2.5Electronic and Vibrational Spectroscopy by Circularly
Polarized Light 2.5.1Electronic circular dichroism 2.5.2Raman optical activity References CHAPTER 3Photonics and Plasmonics 3.1Introduction 3.2Exciton 3.2.1Brief introduction of exciton 3.2.2Exciton classification 3.3Polariton 3.3.1Brief introduction of polariton 3.3.2Polariton types 3.4Plasmon and Surface Plasmons 3.4.1Plasmons 3.4.2Surface plasmons 3.4.3Surface plasmon polaritons 3.5PlasmonExciton Coupling: Plexciton References CHAPTER 4Surface Plasmon 4.1Brief Introduction of Surface Plasmon 4.2Physical Mechanism of Surface Plasmon 4.2.1Drude model 4.2.2Relationship between refractive index and dielectric constant 4.2.3Dispersion relation 4.3Localized Surface Plasmon 4.4Plasmonic Waveguide 4.4.1The electromagnetic theory for calculating NWs 4.4.2The decay rate in the plasmon mode 4.4.3The spontaneous emission near the nanotip 4.4.4SPP modes of Ag NW by one end excitation References CHAPTER 5PlasmonEnhanced Fluorescence Spectroscopy 5.1The Principle of PlasmonEnhanced Fluorescence 5.2PlasmonEnhanced Upconversion Luminescence 5.2.1Brief introduction 5.2.2Physical principle and mechanism 5.3Principle of PlasmonEnhanced FRET References CHAPTER 6PlasmonEnhanced Raman Scattering Spectra 6.1SurfaceEnhanced Raman Scattering Spectroscopy 6.1.1Brief history of SERS spectroscopy 6.1.2Physical mechanism of SERS spectroscopy 6.2TipEnhanced Raman Scattering Spectroscopy 6.2.1Brief introduction of TERS spectroscopy 6.2.2Physical mechanism of TERS spectroscopy 6.2.3Setup of TERS 6.3RemoteExcitation SERS References CHAPTER 7HighVacuum TipEnhanced Raman Scattering Spectroscopy
7.1Brief Introduction 7.1.1Brief description of setup of HVTERS 7.1.2Detailed description of setup of HVTERS 7.2The Application of HVTERS Spectroscopy in in situ PlasmonDriven Chemical Reactions 7.3Plasmonic Gradient Effect 7.4Plasmonic Nanoscissors References CHAPTER 8Physical Mechanism of PlasmonExciton Coupling Interaction
8.1Brief Introduction of Plexcitons 8.2PlasmonExciton Coupling Interaction 8.2.1Strong plasmonexciton coupling interaction 8.2.2Application of strong plasmonexciton coupling interaction 8.2.3Weak plasmonexciton coupling interaction 8.2.4Application of weak plasmonexciton coupling interaction 8.2.5Plexcitons 8.3Application 8.3.1Plasmonic electronsenhanced resonance Raman scattering and electronsenhanced fluorescence spectra 8.3.2Tipenhanced photoluminescence spectroscopy 8.3.3Femtosecond pumpprobe transient absorption spectroscopy References CHAPTER 9PlasmonExcitonCoDriven Surface Catalysis Reactions 9.1PlasmonExcitonCoDriven Surface Oxidation Catalysis
Reactions 9.2PlasmonExcitonCoDriven Surface Reduction Catalysis Reactions 9.3Unified Treatment for PlasmonExcitonCoDriven Oxidation and Reduction Reactions References CHAPTER 10Nonlinear Optical Microscopies of CARS,TPEF,SHG,
SFG and SRS
10.1Principles of Nonlinear Optical Microscopies 10.2Applications of Nonlinear Optical Microscopies 10.2.1Optical characterizations of 2D materials 10.2.2Highly efficient photocatalysis of gC3N4 10.2.3Optical characterizations of 3D materials 10.2.4Advances of biophotonics 10.2.5MSPRenhanced nonlinear optical microscopy References Acknowledgements
納米光子學(xué)叢書(shū)納米光子學(xué)與光譜/孫萌濤 NANOSCALE PHOTONICS AND SPECTROSCOPY 作者簡(jiǎn)介
北京科技大學(xué)擔(dān)任教授和博導(dǎo)。孫萌濤教授長(zhǎng)期從事基于表面等離激元增強(qiáng)的分子拉曼光譜的實(shí)驗(yàn)和理論研究,研發(fā)高真空針尖增強(qiáng)拉曼光譜儀,實(shí)現(xiàn)目標(biāo)分子拉曼光譜的超靈敏檢測(cè),并揭示表面等離激元增強(qiáng)拉曼光譜的物理和化學(xué)機(jī)制,以通訊作者(或第一作者)在國(guó)際重要學(xué)術(shù)期刊上發(fā)表SCI論文超過(guò)180篇(其中ESI高引論文11篇),所有論文引用超過(guò)6100次,H-index 43,曾15次應(yīng)邀在國(guó)際重要學(xué)術(shù)期刊撰寫(xiě)本領(lǐng)域的綜述,應(yīng)邀撰寫(xiě)英文專(zhuān)著(科學(xué)出版社)五本(第一作者)。2017年2月,孫萌濤教授獲得遼寧省科學(xué)技術(shù)(自然科學(xué))二等獎(jiǎng)(個(gè)人第二)。
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