Optical Processes in Microcavities
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"Optical Processes in Microcavities" by Richard Kounai Chang, Anthony J. Campillo is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.
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.
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"Optical Processes in Microcavities" by Richard Kounai Chang, Anthony J. Campillo is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.
Topic: Devices & Sensors
Author: Richard Kounai Chang, Anthony J. Campillo
Who this is for:
- Physics students
- Science-minded readers
- Readers building technical understanding
Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.
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.
| Author | Richard Kounai Chang, Anthony J. Campillo |
| Publisher | World Scientific |
| Published | 1996 |
| ISBN-13 | 9789810223441 |
| Binding | Hardcover |
| Pages | 456 |
| Language | English |
| Subjects | Science |
| Topic | Devices & Sensors |
| Series | Advanced Applied Physics |
Format: Hardcover
Length: 456 pages
Language: English
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