
Smart & Adaptive Optics
Selected, peer reviewed papers from CIMTEC 2012 - 4th International Conference on Smart Materials, Structures and Systems, June 10-14, 2012, Terme, Italy
Trans Tech Publications Ltd (Publisher)
Published on 13. January 2013
Book
Paperback/Softback
104 pages
978-3-908158-68-4 (ISBN)
Description
The 12 peer-reviewed papers collected here together offer a plenitude of up-to-date information on "Smart & Adaptive Optics".
Volume is indexed by Thomson Reuters CPCI-S (WoS).
The papers are conveniently arranged into: Chapter 1: Nano-photonics, Chapter 2: Active Optical Materials and Devices, Chapter 3: Adaptive Optics.
Volume is indexed by Thomson Reuters CPCI-S (WoS).
The papers are conveniently arranged into: Chapter 1: Nano-photonics, Chapter 2: Active Optical Materials and Devices, Chapter 3: Adaptive Optics.
More details
Series
Language
English
Place of publication
Zurich
Switzerland
Target group
Professional and scholarly
College/higher education
Illustrations
Illustrations
Dimensions
Height: 240 mm
Width: 170 mm
Thickness: 5 mm
Weight
400 gr
ISBN-13
978-3-908158-68-4 (9783908158684)
DOI
10.4028/www.scientific.net/AST.82
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Pietro Vincenzini | Maurizio Ferrari | Giancarlo Righini
Smart & Adaptive Optics
Selected, peer reviewed papers from CIMTEC 2012 - 4th International Conference on Smart Materials, Structures and Systems, June 10-14, 2012, Terme, Italy
Software
01/2013
Trans Tech Publications Ltd
€158.33
Shipment within 10-20 days

Pietro Vincenzini | Maurizio Ferrari | Giancarlo Righini
Smart & Adaptive Optics
Selected, peer reviewed papers from CIMTEC 2012 - 4th International Conference on Smart Materials, Structures and Systems, June 10-14, 2012, Terme, Italy
E-Book
09/2012
Trans Tech Publications Ltd
€164.78
Available for download
Content
Preface and Committees
Chapter 1: Nanophotonics
Gas Cluster Ion Beam Technology for Nano-Fabrication
Passive and Active Nanophotonics
Chapter 2: Active Optical Materials and Devices
White Light Generation in Rare-Earth-Doped Amorphous Films Produced by Ultrasonic Spray Pyrolysis
Hybrid Organic-Inorganic Photodriven Nanoimpellers for Drug Release
PLZT:Nd3+ Ceramics for Photonic Applications
Development of Field-Controlled Smart Optic Materials (ScN, AlN) with Rare Earth Dopants
Multimodal, High-Resolution Imaging System Based on Stimuli-Responsive Polymers
Electric Field Dependence of Molecular Orientation and Anisotropic Magnetic Interactions in the Ferroelectric Liquid Crystalline Phase of an Organic Radical Compound by EPR Spectroscopy
Whispering Gallery Mode Microresonators for Biosensing
Chapter 3: Adaptive Optics
Intelligent Optical Systems Using Adaptive Optics
Adaptive Optical Systems in Russian Federal Nuclear Center - VNIIEF with Different Control Principles
Peculiarities of Adaptive Laser Location of Debris with Rough Surface
Chapter 1: Nanophotonics
Gas Cluster Ion Beam Technology for Nano-Fabrication
Passive and Active Nanophotonics
Chapter 2: Active Optical Materials and Devices
White Light Generation in Rare-Earth-Doped Amorphous Films Produced by Ultrasonic Spray Pyrolysis
Hybrid Organic-Inorganic Photodriven Nanoimpellers for Drug Release
PLZT:Nd3+ Ceramics for Photonic Applications
Development of Field-Controlled Smart Optic Materials (ScN, AlN) with Rare Earth Dopants
Multimodal, High-Resolution Imaging System Based on Stimuli-Responsive Polymers
Electric Field Dependence of Molecular Orientation and Anisotropic Magnetic Interactions in the Ferroelectric Liquid Crystalline Phase of an Organic Radical Compound by EPR Spectroscopy
Whispering Gallery Mode Microresonators for Biosensing
Chapter 3: Adaptive Optics
Intelligent Optical Systems Using Adaptive Optics
Adaptive Optical Systems in Russian Federal Nuclear Center - VNIIEF with Different Control Principles
Peculiarities of Adaptive Laser Location of Debris with Rough Surface