0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R1,000 - R2,500 (1)
  • R10,000+ (1)
  • -
Status
Brand

Showing 1 - 2 of 2 matches in All Departments

Spontaneous Emission and Laser Oscillation in Microcavities (Paperback): Yokoyama Hiroyuki, Kikuo Ujihara Spontaneous Emission and Laser Oscillation in Microcavities (Paperback)
Yokoyama Hiroyuki, Kikuo Ujihara
R1,911 Discovery Miles 19 110 Ships in 12 - 17 working days

In spite of the increasing importance of microcavities, device physics or the observable phenomena in optical microcavities such as enhanced or inhibited spontaneous emission and its relation with the laser oscillation has not been systematically well-described-until now. Spontaneous Emission and Laser Oscillation in Microcavities presents the basics of optical microcavities. The volume is divided into ten chapters, each written by respected authorities in their areas. The book surveys several methods describing free space spontaneous emission and discusses changes in the feature due to the presence of a cavity. The effect of dephasing of vacuum fields on spontaneous emission in a microcavity and the effects of atomic broadening on spontaneous emission in an optical microcavity are examined. The book details the splitting in transmission peaks of planar microcavities containing semiconductor quantum wells. A simple but useful way to consider the change in the spontaneous emission rate from the viewpoint of mode density alteration by wavelength-sized cavities is provided. Authors also discuss the spontaneous emission in dielectric planar microcavities. Spontaneous emission in microcavity surface emitting lasers is covered, as are the effects of electron confinement in semiconductor quantum wells, wires, and boxes also given. The volume extends the controlling spontaneous emission phenomenon to laser oscillation. Starting from the Fermi golden rule, the microcavity laser rate equations are derived, and the oscillation characteristics are analyzed. Recent progress in optical microcavity experiments is summarized, and the applicability in massively optical parallel processing systems and demands for the device performance are explored. This volume is extremely useful as a textbook for graduate and postgraduate students and works well as a unique reference for researchers beginning to study in the field.

Spontaneous Emission and Laser Oscillation in Microcavities (Hardcover): Yokoyama Hiroyuki, Kikuo Ujihara Spontaneous Emission and Laser Oscillation in Microcavities (Hardcover)
Yokoyama Hiroyuki, Kikuo Ujihara
R15,083 Discovery Miles 150 830 Ships in 12 - 17 working days

In spite of the increasing importance of microcavities, device physics or the observable phenomena in optical microcavities such as enhanced or inhibited spontaneous emission and its relation with the laser oscillation has not been systematically well-described-until now.
Spontaneous Emission and Laser Oscillation in Microcavities presents the basics of optical microcavities. The volume is divided into ten chapters, each written by respected authorities in their areas.
The book surveys several methods describing free space spontaneous emission and discusses changes in the feature due to the presence of a cavity. The effect of dephasing of vacuum fields on spontaneous emission in a microcavity and the effects of atomic broadening on spontaneous emission in an optical microcavity are examined. The book details the splitting in transmission peaks of planar microcavities containing semiconductor quantum wells.
A simple but useful way to consider the change in the spontaneous emission rate from the viewpoint of mode density alteration by wavelength-sized cavities is provided. Authors also discuss the spontaneous emission in dielectric planar microcavities. Spontaneous emission in microcavity surface emitting lasers is covered, as are the effects of electron confinement in semiconductor quantum wells, wires, and boxes also given.
The volume extends the controlling spontaneous emission phenomenon to laser oscillation. Starting from the Fermi golden rule, the microcavity laser rate equations are derived, and the oscillation characteristics are analyzed. Recent progress in optical microcavity experiments is summarized, and the applicability in massively optical parallel processing systems and demands for the device performance are explored.
This volume is extremely useful as a textbook for graduate and postgraduate students and works well as a unique reference for researchers beginning to study in the field.

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Dig & Discover: Ancient Egypt - Excavate…
Hinkler Pty Ltd Kit R263 Discovery Miles 2 630
Ergonomics Direct Ergo Flex Mobile Phone…
 (1)
R439 R349 Discovery Miles 3 490
Gold 3-in-1 Charging Cable
R69 Discovery Miles 690
How To Fix (Unf*ck) A Country - 6 Things…
Roy Havemann Paperback R310 R210 Discovery Miles 2 100
Alva 5-Piece Roll-Up BBQ/ Braai Tool Set
R389 R346 Discovery Miles 3 460
Casio LW-200-7AV Watch with 10-Year…
R999 R884 Discovery Miles 8 840
Positively Me - Daring To Live And Love…
Nozibele Mayaba, Sue Nyathi Paperback  (2)
R310 R210 Discovery Miles 2 100
Maped Smiling Planet Scissor Vivo - on…
R26 Discovery Miles 260
- (Subtract)
Ed Sheeran CD R172 R101 Discovery Miles 1 010
Gotcha Gotcha Scorch Watch (Gents)
R329 R303 Discovery Miles 3 030

 

Partners