Optical Effects Associated with Small Particles

Optical Effects Associated with Small Particles
Author: R K Chang,P W Barber
Publsiher: World Scientific
Total Pages: 360
Release: 1988-03-01
Genre: Science
ISBN: 9789814571296

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This volume is a collection of review articles by scientists who have pioneered many of the recent advances in studies of the optical effects of small particles. The book begins with a review of the multitude of sharp dielectric resonances which exist in all optical spectra as a result of particle size and shape. Latest advances in absorption and fluorescence spectroscopy of a single particle and/or an ensemble of particles are also discussed, as well as advances in the energy transfer mechanisms for molecules embedded in the particle. The effects of laser-induced heating on a single particle are reviewed in terms of the hydrodynamics and thermodynamics of the liquid droplet and its ambient gas surrounding. The limits of applying bulk optical constants to small particles which lie between the bulk substance and the quantum-sized substance are also presented. Contents:Morphology-Dependent Resonances (S Hill & R Benner)Spectroscopy of Single Levitated Micron Sized Particles (S Arnold)Absorption and Fluorescence Spectroscopy of Aerosols (A Campillo & Horn-Bond Lin)Laser-Induced Droplet Heating (R Armstrong)The Applicability of Bulk Optical Constants to Small Particles (D Huffman) Readership: Optical physicists, applied physicists, chemists, mechanical and chemical engineers. Review: “This volume provides a timely and well-written account of a number of topics subsumed under the title.” Milton Kerker Journal of Colloid and Interface Science (USA), 1989 “This is a most interesting and useful review of new departures in light scattering research with potentially important applications … clearly written covering the essential basics as well as current developments…” A R Jones Journal of Modern Optics, 1989

Absorption and Scattering of Light by Small Particles

Absorption and Scattering of Light by Small Particles
Author: Craig F. Bohren,Donald R. Huffman
Publsiher: John Wiley & Sons
Total Pages: 544
Release: 2008-09-26
Genre: Science
ISBN: 9783527618163

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Absorption and Scattering of Light by Small Particles Treating absorption and scattering in equal measure, this self-contained, interdisciplinary study examines and illustrates how small particles absorb and scatter light. The authors emphasize that any discussion of the optical behavior of small particles is inseparable from a full understanding of the optical behavior of the parent material-bulk matter. To divorce one concept from the other is to render any study on scattering theory seriously incomplete. Special features and important topics covered in this book include: * Classical theories of optical properties based on idealized models * Measurements for three representative materials: magnesium oxide, aluminum, and water * An extensive discussion of electromagnetic theory * Numerous exact and approximate solutions to various scattering problems * Examples and applications from physics, astrophysics, atmospheric physics, and biophysics * Some 500 references emphasizing work done since Kerker's 1969 work on scattering theory * Computer programs for calculating scattering by spheres, coated spheres, and infinite cylinders

Scattering Absorption and Emission of Light by Small Particles

Scattering  Absorption  and Emission of Light by Small Particles
Author: Michael I. Mishchenko,Larry D. Travis,Andrew A. Lacis
Publsiher: Cambridge University Press
Total Pages: 562
Release: 2002-06-06
Genre: Science
ISBN: 052178252X

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A thorough and up-to-date treatment of electromagnetic scattering by small particles.

Optical Properties of Metal Clusters

Optical Properties of Metal Clusters
Author: Uwe Kreibig,Michael Vollmer
Publsiher: Springer Science & Business Media
Total Pages: 552
Release: 2013-04-17
Genre: Technology & Engineering
ISBN: 9783662091098

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Optical Properties of Metal Clusters deals with the electronic structure of metal clusters determined optically. Clusters - as state intermediate between molecules and the extended solid - are important in many areas, e.g. in air pollution, interstellar matter, clay minerals, photography, heterogeneous catalysis, quantum dots, and virus crystals. This book extends the approaches of optical molecular and solid-state methods to clusters, revealing how their optical properties evolve as a function of size. Cluster matter, i.e. extended systems of many clusters - the most frequently occuring form - is also treated. The combination of reviews of experimental techniques, lists of results and detailed descriptions of selected experiments will appeal to experts, newcomers and graduate students in this expanding field.

Optical Trapping and Manipulation of Neutral Particles Using Lasers

Optical Trapping and Manipulation of Neutral Particles Using Lasers
Author: Arthur Ashkin
Publsiher: World Scientific
Total Pages: 940
Release: 2006-12-29
Genre: Science
ISBN: 9789814494342

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This important volume contains selected papers and extensive commentaries on laser trapping and manipulation of neutral particles using radiation pressure forces. Such techniques apply to a variety of small particles, such as atoms, molecules, macroscopic dielectric particles, living cells, and organelles within cells. These optical methods have had a revolutionary impact on the fields of atomic and molecular physics, biophysics, and many aspects of nanotechnology. In atomic physics, the trapping and cooling of atoms down to nanokelvins and even picokelvin temperatures are possible. These are the lowest temperatures in the universe. This made possible the first demonstration of Bose–Einstein condensation of atomic and molecular vapors. Some of the applications are high precision atomic clocks, gyroscopes, the measurement of gravity, cryptology, atomic computers, cavity quantum electrodynamics and coherent atom lasers. A major application in biophysics is the study of the mechanical properties of the many types of motor molecules, mechanoenzymes, and other macromolecules responsible for the motion of organelles within cells and the locomotion of entire cells. Unique in vitro and in vivo assays study the driving forces, stepping motion, kinetics, and efficiency of these motors as they move along the cell's cytoskeleton. Positional and temporal resolutions have been achieved, making possible the study of RNA and DNA polymerases, as they undergo their various copying, backtracking, and error correcting functions on a single base pair basis. Many applications in nanotechnology involve particle and cell sorting, particle rotation, microfabrication of simple machines, microfluidics, and other micrometer devices. The number of applications continues to grow at a rapid rate. The author is the discoverer of optical trapping and optical tweezers. With his colleagues, he first demonstrated optical levitation, the trapping of atoms, and tweezer trapping and manipulation of living cells and biological particles. This is the only review volume covering the many fields of optical trapping and manipulation. The intention is to provide a selective guide to the literature and to teach how optical traps really work. Contents:Optical LevitationTrapping of Atoms and Biological Particles in the 1980–1990 DecadeUse of Optical Tweezers to Study Single Motor MoleculesOrigin of Tweezer Forces on Macroscopic Particles Using Highly Focused BeamsRotation of Particles by Radiation PressureMicrochemistryUses of Slow AtomsRole of All-Optical Traps and MOTs in Atomic PhysicsFeshbach ResonancesVortices and Frictionless Flow in Bose–Einstein CondensatesTrapped Fermi Gasesand other papers Readership: Researchers and students of atomic physics, molecular physics, biophysics and nanotechnology; historians of science. Keywords:

Optical Processes in Microparticles and Nanostructures

Optical Processes in Microparticles and Nanostructures
Author: Ali Serpenguzel,Andrew W. Poon
Publsiher: World Scientific
Total Pages: 486
Release: 2011
Genre: Science
ISBN: 9789814295772

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This Festschrift is a tribute to the eminent scholar, Professor Richard Kounai Chang, on his retirement from Yale University on June 12, 2008. During his over four decades of scientific exploration, Professor Chang has made a lasting contribution to the development of linear and nonlinear optics and devices in confined geometries, of surface second-harmonic generation and surface-enhanced Raman scattering, and of novel methods for detecting airborne aerosol pathogens. This volume assembles a collection of articles contributed by former students, collaborators, and colleagues of Professor Chang all over the world. The topics span a diverse scope in applied optics frontiers, many of which are rooted in Professor Chang's pioneering research.

Quantum Optics and the Spectroscopy of Solids

Quantum Optics and the Spectroscopy of Solids
Author: T. Hakiogammalu,Alexander S. Shumovsky
Publsiher: Springer Science & Business Media
Total Pages: 271
Release: 2013-03-09
Genre: Science
ISBN: 9789401587969

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Remarkable recent progress in quantum optics has given rise to extremely precise quantum measurements that are used in the research into the fundamentals of quantum physics, and in different branches of physics such as optical spectroscopy. This progress stimulates new technologies in the field of optical communications, optical computation and information systems. This state-of-the-art volume presents work from a Summer School on Advances in Quantum Optics and Spectroscopy of Solids, held in Ankara, Turkey, in 1995. The various contributions written by leading scientists in the field cover a wide range of subjects in this exciting area of physics, and report new and important results and ideas. Topics dealt with include the interaction of quantum light with trapped atoms and condensed matter; quantum tomography and phase analysis; and many applications of quantum optics from mesoscopic physics to correlation spectroscopy of non-classical states, which are of major importance in understanding the nature of collective excitations in solids. Audience: This book will be of interest to postgraduate students and researchers whose work involves quantum optics, solid state spectroscopy and its applications.

Nano optics and Near field Optical Microscopy

Nano optics and Near field Optical Microscopy
Author: Anatoly V. Zayats,David Richards
Publsiher: Artech House
Total Pages: 379
Release: 2009
Genre: Science
ISBN: 9781596932845

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"This groundbreaking book focuses on near-field microscopy which has opened up optical processes at the nanoscale for direct inspection. Further, it explores the emerging area of nano-optics which promises to make possible optical microscopy with true nanometer resolution. This frontline resource helps you achieve high resolution optical imaging of biological species and functional materials. You also find guidance in the imaging of optical device operation and new nanophotonics functionalities"--EBL.