Semiconductor Nanolasers

Nonfiction, Science & Nature, Technology, Electronics, Optoelectronics, Science
Cover of the book Semiconductor Nanolasers by Qing Gu, Yeshaiahu Fainman, Cambridge University Press
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Author: Qing Gu, Yeshaiahu Fainman ISBN: 9781316981580
Publisher: Cambridge University Press Publication: February 16, 2017
Imprint: Cambridge University Press Language: English
Author: Qing Gu, Yeshaiahu Fainman
ISBN: 9781316981580
Publisher: Cambridge University Press
Publication: February 16, 2017
Imprint: Cambridge University Press
Language: English

This unique resource explains the fundamental physics of semiconductor nanolasers, and provides detailed insights into their design, fabrication, characterization, and applications. Topics covered range from the theoretical treatment of the underlying physics of nanoscale phenomena, such as temperature dependent quantum effects and active medium selection, to practical design aspects, including the multi-physics cavity design that extends beyond pure electromagnetic consideration, thermal management and performance optimization, and nanoscale device fabrication and characterization techniques. The authors also discuss technological applications of semiconductor nanolasers in areas such as photonic integrated circuits and sensing. Providing a comprehensive overview of the field, detailed design and analysis procedures, a thorough investigation of important applications, and insights into future trends, this is essential reading for graduate students, researchers, and professionals in optoelectronics, applied photonics, physics, nanotechnology, and materials science.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This unique resource explains the fundamental physics of semiconductor nanolasers, and provides detailed insights into their design, fabrication, characterization, and applications. Topics covered range from the theoretical treatment of the underlying physics of nanoscale phenomena, such as temperature dependent quantum effects and active medium selection, to practical design aspects, including the multi-physics cavity design that extends beyond pure electromagnetic consideration, thermal management and performance optimization, and nanoscale device fabrication and characterization techniques. The authors also discuss technological applications of semiconductor nanolasers in areas such as photonic integrated circuits and sensing. Providing a comprehensive overview of the field, detailed design and analysis procedures, a thorough investigation of important applications, and insights into future trends, this is essential reading for graduate students, researchers, and professionals in optoelectronics, applied photonics, physics, nanotechnology, and materials science.

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