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Quantum Confined Laser Devices: Optical gain and recombination in semiconductors
출판사 : Oxford University Press
저 자 : Blood
ISBN : 9780199644520
발행일 : 2015-12
도서종류 : 외국도서
발행언어 : 영어
페이지수 : 400
판매가격 : 39,000원
판매여부 : 재고확인요망
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   Quantum Confined Laser Devices: Optical gain and recombination in semiconductors 목차
1. The beginning

Part I: The diode laser
2. Introduction to optical gain
3. The laser diode structure
4. The planar waveguide
5. Laser action

Part II: Fundamental processes
6. The classical atomic dipole oscillator
7. Quantum mechanical interaction
8. Quantum confinement

Part III: Device Physics
9. Gain and emission in quantum dots
10. Rate equations for dot state occupation
11. Optical transitions in quantum wells
12. Gain and recombination current in quantum wells
13. Rate equations for laser operation

Part IV: Device Operation
14. Device Structures
15. Threshold and the light-current characteristic
16. Temperature dependence of threshold current

Part V: Studies of gain and recombination
17. Measurement of gain and emission
18. Single pass measurement of gain and emission
   도서 상세설명   

The semiconductor laser, invented over 50 years ago, has had an enormous impact on the digital technologies that now dominate so many applications in business, commerce and the home. The laser is used in all types of optical fibre communication networks that enable the operation of the internet, e-mail, voice and skype transmission. Approximately one billion are produced each year for a market valued at around $5 billion. Nearly all semiconductor lasers now use extremely thin layers of light emitting materials (quantum well lasers). Increasingly smaller nanostructures are used in the form of quantum dots. The impact of the semiconductor laser is surprising in the light of the complexity of the physical processes that determine the operation of every device.

This text takes the reader from the fundamental optical gain and carrier recombination processes in quantum wells and quantum dots, through descriptions of common device structures to an understanding of their operating characteristics. It has a consistent treatment of both quantum dot and quantum well structures taking full account of their dimensionality, which provides the reader with a complete account of contemporary quantum confined laser diodes. It includes plenty of illustrations from both model calculations and experimental observations. There are numerous exercises, many designed to give a feel for values of key parameters and experience obtaining quantitative results from equations. Some challenging concepts, previously the subject matter of research monographs, are treated here at this level for the first time.

To request a copy of the Solutions Manual, visit http://global.oup.com/uk/academic/physics/admin/solutions.

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