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Quantum Well Lasers (Quantum Electronics--Principles and Applications)
 
 
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Quantum Well Lasers (Quantum Electronics--Principles and Applications) [Hardcover]

Peter S. Zory Jr. (Editor), Paul F. Liao (Series Editor), Paul Kelley (Series Editor)
5.0 out of 5 stars  See all reviews (1 customer review)


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Book Description

0127818901 978-0127818900 April 27, 1993 1
This book provides the information necessary for the reader to achieve a thorough understanding of all aspects of QW lasers - from the basic mechanism of optical gain, through the current technolgoical state of the art, to the future technologies of quantum wires and quantum dots. In view of the growing importance of QW lasers, this book should be read by all those with an active interest in laser science and technology, from the advanced student to the experienced laser scientist.

* The first comprehensive book-length treatment of quantum well lasers
* Provides a detailed treatment of quantum well laser basics
* Covers strained quantum well lasers
* Explores the different state-of-the-art quantum well laser types
* Provides key information on future laser technologies

Product Details

  • Hardcover: 504 pages
  • Publisher: Academic Press; 1 edition (April 27, 1993)
  • Language: English
  • ISBN-10: 0127818901
  • ISBN-13: 978-0127818900
  • Product Dimensions: 9.2 x 6.2 x 1.2 inches
  • Shipping Weight: 2.1 pounds
  • Average Customer Review: 5.0 out of 5 stars  See all reviews (1 customer review)
  • Amazon Best Sellers Rank: #1,842,787 in Books (See Top 100 in Books)

 

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2 of 2 people found the following review helpful:
5.0 out of 5 stars Still a great rerview of the topic, July 10, 2007
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This review is from: Quantum Well Lasers (Quantum Electronics--Principles and Applications) (Hardcover)
Although published a long time ago, this text is still a fine review of quantum-well devices, from various perspectives. The chapter by Bour on Phosphides is particularly valuable.
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Inside This Book (learn more)
First Sentence:
The classic tale of the "one dimensional electron in a box" has finally become a problem with more than mere academic interest. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
strained layer lasers, bulk bandgap energy, given optical mode, transparency electron density, valence subband structure, quantum capture, radiative current density, intraband relaxation time, layer laser structures, gain compression coefficient, unstrained quantum, separate confinement region, line broadening function, higher optical gain, strained layer structures, strained layer quantum, confinement axis, strained lasers, higher lying subbands, transparency current density, higher differential gain, laser threshold current density, relaxation oscillation frequency, injection carrier density, indium mole fraction
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Quantum Electron, Academic Press, New York, Eli Kapon, Threshold Considerations, Lau Fig, Solid State Electron, Liyhtwave Technol, University of Illinois
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