線性和非線性光譜和顯微鏡

線性和非線性光譜和顯微鏡

《線性和非線性光譜和顯微鏡》是2021年清華大學出版社出版的圖書。

基本介紹

  • 中文名:線性和非線性光譜和顯微鏡
  • 作者:孫萌濤,穆希皎,李睿
  • 出版時間:2021年11月
  • 出版社:清華大學出版社
  • ISBN:9787302592105
  • 類別:工業技術類圖書
  • 開本:128 開
  • 裝幀:平裝-膠訂
內容簡介,圖書目錄,

內容簡介

本書關注與SRS,CARS,TPEF和SHG信號的原理介紹,適當的理論計算方法。以及這些信號測量,成像的具體方法和實驗結果及其分析。理論部分從非線性光學以及強光關係蠱蛾的基礎理論開始,逐漸過渡到具體光學信號的具體理論計算方法。理論部分包含經典理論和量子理論的結合,使讀者能夠很好的理解這些技術的核心。實驗部分以光譜的實驗技術和成像的實驗部分介紹為主,主要是為了使讀者能對非線性光學信號光譜以及成像方法有一個比較全面的認識。實驗部分主要介紹非線性光學光譜和成像技術在材料和生物領域的套用。

圖書目錄

Chapter 1Introduction
Chapter 2Basic Theory of Nonlinear Optics
2.1Classical electromagnetic theory of nonlinear optics
2.1.1Measurement of nonlinear optical processes
2.1.2Nonlinearly induced polarization effect of
optical media
2.1.3Tensor representation of nonlinear polarization
2.1.4Rotational symmetry of nonlinear polarizability
tensor elements
2.1.5Time reversal symmetry of polarization rate
2.2Quantum theory and method of nonlinear optics
2.2.1Density matrix
2.2.2Timedependent density matrix
2.2.3The tensor and properties of the polarizability
of the independent molecular system
2.2.4The tensor and properties of the polarizability of the
molecular system with intermolecular interaction
2.2.5Resonanceenhanced polarizability
2.2.6Calculation method of nonlinear polarizability by
higher order derivative
2.2.7Nonlinear polarizability by sumoverstate
method
2.3Common nonlinear optical processes
2.3.1Second harmonic generation
2.3.2Sum frequency generation
2.3.3Raman amplification
2.3.4Fourwave mixing
Chapter 3The Principle, Application and Imaging of CARS
3.1Principles of CARS
3.1.1Mechanism of CARS signal generation
3.1.2CARS optical configuration
3.2Biomedical imaging of CARS
3.3Materials imaging of CARS
3.3.1CARS image for porous carbon
3.3.2CARS image for graphene
Chapter 4The Principle, Application and Imaging of SRS
4.1Principles of SRS
4.1.1Quantum theory of SRS
4.1.2Instrumentation of SRS
4.2Biomedical imaging
4.2.1SRS imaging of hela cells
4.2.2SRS detection and diagnosis of the boundary
of glioma
4.2.3SRS imaging of laryngeal cancer
4.3Material composition analysis
Chapter 5The Principle, Application and Imaging of SHG
5.1Principles of SHG
5.2Biomedical imaging of SHG
5.2.1Collagen
5.2.2SHG imaging for elastic arteries
5.2.3SHG imaging for snail
Chapter 6The Principle, Application and Imaging of TPEF
6.1Principles of TPEF
6.1.1Twophoton absorption
6.1.2Design of strong TPA cross section
6.1.3Twophoton excited/emitted fluoresence
6.1.4TPEF optical configuration
6.2Biomedical imaging of TPEF
6.2.1TPEF and lifetime imaging for glioma
6.2.2TPEF and lifetime imaging for gastrointestinal
cancer
Chapter 7The Principle, Application and Imaging of STED
7.1Principles of STED
7.1.1Selection of excitation and loss laser types
7.1.2Selection of excitation and loss wavelengths
7.2Biomedical imaging of STED
7.2.1Nervous structure imaging
7.2.23D STED imaging
Chapter 8PlasmonEnhanced Nonlinear Spectroscopy
and Imaging
8.1Principles
8.1.1Plasmon
8.1.2Enhancement mechanism
8.2Application of surface plasmon enhanced nonlinear
optical signals
8.2.1Surfaceplasmonenhanced CARS
8.2.2Surfaceplasmonenhanced TPEF
8.2.3Surfaceplasmonenhanced highorder harmonic
wave generate
Bibliography
Acknowledgement
Indexes

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