Log In
Or create an account ->
Imperial Library
Home
About
News
Upload
Forum
Help
Login/SignUp
Index
Cover
Half Title
Title Page
Copyright Page
Contents
Preface
Part I Linear Optics
1. Au-Core Pd-Shell Nanoparticles
1.1 Introduction
1.2 Principle
1.2.1 Surface Plasmon Resonance
1.2.2 Computational Method
1.3 Methods
1.3.1 Absorbance and Fluorescence
1.3.2 Fluorescence Quantum Yield
1.3.3 Fluorescence Polarization
1.4 Applications
1.4.1 Fluorescence Enhancer of Mercury Detection
1.4.2 Fluorescence Enhancer of Latent Fingerprints Detection
1.5 Implementations
1.5.1 Absorbance and Fluorescence
1.5.2 Fluorescence Quantum Yield
1.5.3 Fluorescence Polarization
1.5.4 Fluorescence Enhancer of Mercury Detection
1.5.5 Fluorescence Enhancer of Image Enhancement of Latent Fingerprints
2. ZnO Nanoparticles
2.1 Introduction
2.2 Fabrications
2.2.1 Nanolithography
2.2.2 Laser Ablation
2.3 Applications
2.3.1 Biomedical Uses
2.3.2 Industrial Uses
2.3.3 Photovoltaic Uses
2.4 Method
2.5 Implementations
2.5.1 ZnO Nanoparticles
2.5.2 ZnO/Au Nanocomposites
2.5.3 ZnO/Coumarin-153 Nanocomposites
3. Fe3O4 Magnetic Nanoparticles
3.1 Introduction
3.2 Principle
3.3 Fluorescence Resonance Energy Transfer
3.4 Applications
3.5 Implementations
4. Organic Light-Emitting Diode
4.1 Introduction
4.2 Principle
4.3 Methods
4.4 Implementations
4.4.1 White OLED
4.4.1.1 Single host structures
4.4.1.2 White OLED structures
4.4.2 Blue OLED
5. Pb-Fe-Shielded Material
5.1 Introduction
5.2 Gamma-Matter Interaction
5.2.1 Compton Scattering
5.2.2 Photoelectric Absorption
5.2.3 Pair Production
5.3 Computational Method
5.3.1 Interpolation Method
5.3.2 Optimization Model
5.3.3 Contour Plot Method
5.4 Implementation
6. Probe Sensors
6.1 Introduction
6.2 Principle
6.2.1 Turbid Tissue
6.2.2 Reflection Probe
6.2.3 Barcode Scanner
6.2.4 Smart Cane
6.3 Implementations
6.3.1 Reflection Probe
6.3.2 Barcode Scanner
6.3.3 Smart Cane
Part II Nonlinear Optics
7. Nonlinear Medium
7.1 Introduction
7.2 Component of Electric Fields
7.3 Component of Magnetic Fields
7.4 Classification of Nonlinear Medium
8. Wave Propagation
8.1 Introduction
8.2 Polarization
8.3 Wave Propagation in Nonlinear Medium
8.4 Implementations
8.4.1 Plane Wave Propagation in Nonlinear Medium at Normal Angle
8.4.2 Plane Wave Propagation in Nonlinear Medium at a Tile Angle
9. Second Harmonic Generation
9.1 Introduction
9.2 Second Harmonic Generation
9.3 Realistic SHG
9.4 Implementations
9.4.1 Birefringence Phase Matching
9.4.2 Effective Nonlinear Polarization
9.4.3 Quasi-Phase Matching
9.4.4 Spontaneous Polarization
10. Other Frequency Mixing Processes
10.1 Introduction
10.2 Different Frequency Generation
10.3 Sum Frequency Generation
10.3.1 Sum Frequency Generation with Phase Matching
10.3.2 Sum Frequency Generation without Phase Matching
10.4 Optical Parametric Interactions
10.4.1 Optical Parametric Amplification
10.4.2 Optical Parametric Oscillation
10.5 Optical Resonant Oscillator
10.5.1 Single Resonant Oscillator
10.5.2 Double Resonant Oscillator
Suggested Readings
Solutions to Problems
Appendix A
Appendix B
Appendix C
Index
← Prev
Back
Next →
← Prev
Back
Next →