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Preface; Acknowledgments; Contents; List of Figures; List of Symbols; Abbreviations; Chapter 1: Quantum Aspects of Light-Matter Interaction; 1.1 Introduction; 1.1.1 Historical Survey; 1.2 The Dielectric Function of the Free Electron Gas; 1.2.1 Drude Model for Free Electron Gas; 1.2.2 Optical Properties of Metals: Drude Model; 1.2.3 Optical Properties of Metals: Interband Transitions; 1.3 Surface Plasmons, Polaritons, and the Gain Medium; 1.3.1 Surface Plasmon Polariton-Coupled Emission; 1.4 Quantum Emitters; 1.5 The Optical Properties of Rare-Earth Ions.

2.3.3 Effect of the Shape and Size2.4 Plasmon-Photon Interaction; 2.4.1 Local Field Enhancement; 2.4.2 Energy Transfer; 2.5 Conclusion; References; Chapter 3: Plasmonic Nanostructure Arrays Coupled with a Quantum Emitter; 3.1 Introduction; 3.2 Extraordinary Optical Transmission: Optical Nanoantennas; 3.3 Localized Surface Plasmons in Metal Nanostructure Arrays; 3.3.1 Resonance Modes and Tuning; 3.4 Propagation, Guiding, and Localization of Resonance Modes; 3.5 Effects of Nanostructure Arrays on Quantum Emitters; 3.5.1 Transmission Enhancement; 3.5.2 Focusing of Surface Plasmon Polaritons.

3.6 Polarization Control; 3.7 Conclusion; References; Chapter 4: Potential Applications; References; Index.

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