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Optical Processes in Microcavities

Optical Processes in Microcavities
Author: Richard Kounai Chang
Publisher: World Scientific
Total Pages: 456
Release: 1996
Genre: Science
ISBN: 9789810223441

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The dielectric microstructures act as ultrahigh Q factors optical cavities, which modify the spontaneous emission rates and alter the spatial distributions of the input and output radiation. The editors have selected leading scientists who have made seminal contributions in different aspects of optical processes in microcavities. Every attempt has been made to unify the underlying physics pertaining to microcavities of various shapes. This book begins with a chapter on the role of microcavity modes with additional chapters on how these microcavity modes affect the spontaneous and stimulated emission rates, enhance nonlinear optical processes, used in cavity-QED and chemical physics experiments, aid in single-molecule detection, influence the design of microdisk semiconductor lasers, and how deformed cavities can be treated with classical chaos theory.


Optical Processes in Semiconductor Microcavities

Optical Processes in Semiconductor Microcavities
Author:
Publisher:
Total Pages: 17
Release: 2000
Genre:
ISBN:

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The final technical report for grant F49620-96-10310 summarizes research performed on optical processes in semiconductor microcavities. This research program has lead to new understanding on nonlinear optical processes in the nonperturbative regime in semiconductor microcavities and to the development of a novel microcavity that can combine extreme photonic confinement in fused silica microspheres with electronic confinement in semiconductor nanostructures.


Optical Processes in High-Q Semiconductor Microcavities

Optical Processes in High-Q Semiconductor Microcavities
Author:
Publisher:
Total Pages: 15
Release: 2004
Genre:
ISBN:

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This final progress report summarizes research efforts in two areas: cavity QED of quantum dots and electromagnetically induced transparency (EIT) in GaAs quantum wells. Cavity QED studies are based on the development of a composite nanocrystal-microsphere system, in which CdSe/ZnS core/shell nanocrystals couple to whispering gallery modes (WGMs) in a fused silica microsphere. The composite microcavity system can feature a Q-factor as high as 108 and a nanocrystal decoherence rate as small as 3 microneV (0.75 GHz), indicating that the composite system can in principle reach the strong coupling regime of cavity QED. EIT studies have exploited the use of Coulomb interactions between excitons to induce and manipulate exciton spin coherence and biexciton coherence. These studies have led to the first experimental demonstration of EIT in inter-band optical transitions in semiconductors in A-type, cascaded, and V-type three-level systems.


Optical Microcavities

Optical Microcavities
Author: Kerry Vahala
Publisher: World Scientific
Total Pages: 517
Release: 2004-12-10
Genre: Science
ISBN: 9814483109

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Optical microcavities are structures that enable confinement of light to microscale volumes. The universal importance of these structures has made them indispensable to a wide range of fields. This important book describes the many applications and the related physics, providing both a review and a tutorial of key subjects by leading researchers from each field. The topics include cavity QED and quantum information, nanophotonics and nanostructure interactions, wavelength switching and modulation in optical communications, optical chaos and biosensors.


Optical Processes in Microparticles and Nanostructures

Optical Processes in Microparticles and Nanostructures
Author: Ali Serpenguzel
Publisher: World Scientific
Total Pages: 486
Release: 2011
Genre: Science
ISBN: 9814295779

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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.


Confined Electrons and Photons

Confined Electrons and Photons
Author: Elias Burstein
Publisher: Springer Science & Business Media
Total Pages: 900
Release: 2012-12-06
Genre: Science
ISBN: 1461519632

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The optical properties of semiconductors have played an important role since the identification of semiconductors as "small" bandgap materials in the thinies, due both to their fundamental interest as a class of solids baving specific optical propenies and to their many important applications. On the former aspect we can cite the fundamental edge absorption and its assignment to direct or indirect transitions, many-body effects as revealed by exciton formation and photoconductivity. On the latter aspect, large-scale applications sucb as LEDs and lasers, photovoltaic converters, photodetectors, electro-optics and non-linear optic devices, come to mind. The eighties saw a revitalization of the whole field due to the advent of heterostructures of lower-dimensionality, mainly two-dimensional quantum wells, which through their enhanced photon-matter interaction yielded new devices with unsurpassed performance. Although many of the basic phenomena were evidenced through the seventies, it was this impact on applications which in turn led to such a massive investment in fabrication tools, thanks to which many new structures and materials were studied, yielding funher advances in fundamental physics.


Ultra-high-q Optical Microcavities

Ultra-high-q Optical Microcavities
Author: Yun-feng Xiao
Publisher: World Scientific
Total Pages: 412
Release: 2020-10-29
Genre: Science
ISBN: 981456608X

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Confinement and manipulation of photons using microcavities have triggered intense research interest in both basic and applied physics for more than a decade. Prominent examples are whispering gallery microcavities which confine photons by means of continuous total internal reflection along a curved and smooth surface. The long photon lifetime, strong field confinement, and in-plane emission characteristics make them promising candidates for enhancing light-matter interactions on a chip. In this book, we will introduce different ultra-high-Q whispering gallery microcavities, and focus on their applications in enhancing light-matter interaction, such as ultralow-threshold microlasing, highly sensitive optical biosensing, nonlinear optics, cavity quantum electrodynamics and cavity optomechanics.