Fr. 188.00

Nano-Optics: Principles Enabling Basic Research and Applications

English · Hardback

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Description

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This book provides a comprehensive overview of nano-optics, including basic theory, experiment and applications, particularly in nanofabrication and optical characterization. The contributions clearly demonstrate how advances in nano-optics and photonics have stimulated progress in nanoscience and -fabrication, and vice versa. Their expert authors address topics such as three-dimensional optical lithography and microscopy beyond the Abbe diffraction limit, optical diagnostics and sensing, optical data- and telecommunications, energy-efficient lighting, and efficient solar energy conversion. Nano-optics emerges as a key enabling technology of the 21st century. This work will appeal to a wide readership, from physics through chemistry, to biology and engineering. The contributions that appear in this volume were presented at a NATO Advanced Study Institute held in Erice, 4-19 July, 2015.

Re Ch. 73 - Structure and Luminescence Properties of Nanofluorapatite Activated with Eu3+ Ions Synthesized by Hydrothermal Method, pp 567-569: The authors would like to acknowledge the National Science Centre (NSC) for financial support within the Project 'Preparation and characterization of nanoapatites doped with rare earth ions and their biocomposites' UMO-2012/05/E/ST5/03904

List of contents

Part I: Lectures.- Light-Matter Interactions: A Coupled Oscillator Description.- Luminescence Spectroscopy of Nanophosphors.- Nanomaterials: basic concepts and quantum models.- Non-Radiative Processes In Nanocrystals.- 3d Optical Laser Lithography.- Nanostructures And Nanocrystals With Radiation Color Centers: Characteristics And Some Applications.- Colloidal Nanophotonics: State-Of-The-Art And Prospective.- Ultrafast Nano-Biophotonics.- Circuit Optomechanics With Diamond Integrated Optical Devices.- Terahertz Sensing At The Nanoscale.- How Latitude Location On A Micro-World Enables Real-Time Nanoparticle Sizing.- Nanoplasmonic And Microfluidic Devices For Biological Sensing.- High-Throughput And Ultra-Sensitive Biosensing And Spectroscopy By Plasmonics.- Photoemission From Nanomaterials In Strong Few-Cycle Laser Fields.- Luminescence Of Er 3+ Ions In Nanocrystalline Glass-Ceramics.- Localization Of Yb3+, Er3+ And Co2+ Dopants In An Optical Glass Ceramic Of Mgal2o4 Spinel Nano-Crystals Embedded In Sio2 Glass.- Nd3+, Eu3+ And Yb3+ Ions As Structural Probes In The Scheelite-Type Cadmium Molybdates With Vacancies.- Medical Applications Of Nanomaterials.- Emission Cross Section, Füchtbauer-Ladenburg Equation, And Purcell Factor.- Surface Plasmon Enhanced Fluorescence Of Glycine-Dimer-Functionalized Silver Nanoparticles.- Part II: Interdisciplinary Lecturers.- Andrea Pozzo: The Art of Perspective.- Part III: Short Seminars.- Part IV: Posters.- Part V: List of Participants.- Index.

Summary

This book provides a comprehensive overview of nano-optics, including basic theory, experiment and applications, particularly in nanofabrication and optical characterization. The contributions clearly demonstrate how advances in nano-optics and photonics have stimulated progress in nanoscience and -fabrication, and vice versa. Their expert authors address topics such as three-dimensional optical lithography and microscopy beyond the Abbe diffraction limit, optical diagnostics and sensing, optical data- and telecommunications, energy-efficient lighting, and efficient solar energy conversion. Nano-optics emerges as a key enabling technology of the 21st century. This work will appeal to a wide readership, from physics through chemistry, to biology and engineering. The contributions that appear in this volume were presented at a NATO Advanced Study Institute held in Erice, 4-19 July, 2015.

Re Ch. 73 - Structure and Luminescence Properties of Nanofluorapatite Activated with Eu3+ Ions Synthesized by Hydrothermal Method, pp 567-569: The authors would like to acknowledge the National Science Centre (NSC) for financial support within the Project ‘Preparation and characterization of nanoapatites doped with rare earth ions and their biocomposites’ UMO-2012/05/E/ST5/03904

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