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Long-Wavelength Infrared Semiconductor Lasers

Editat de Hong K Choi
en Limba Engleză Hardback – 18 mar 2004
The first comprehensive treatment of long-wavelength laser technology Because of very strong molecular absorption between 2 mm to 1000 mm, compact semiconductor lasers in this spectral range are ideal components for a wide variety of applications ranging from ultra-sensitive detection of molecules, to the study of fine structures of molecules, to studies of the origin of the universe. However, because of the very rapid progress made in these long-wavelength semiconductor lasers in recent years, no comprehensive information covering the entire field has been available up to this point.
Long-Wavelength Infrared Semiconductor Lasers fills the need for a reference that covers the vast scope of coherent semiconductor sources that emit in this important spectral region. Written by today's foremost experts in the field, the book covers the latest knowledge in the areas of:
  • Quantum cascade lasers
  • Interband mid-infrared lasers fabricated from InGaAs, antimonides, and lead-salt materials
  • Hot-hole lasers
  • Photomixers
Researchers, application engineers, graduate students, and others who develop mid- to far-infrared emitters and use them for spectroscopy, astrophysics, environmental monitoring, and process control will find Long-Wavelength Infrared Semiconductor Lasers a necessary resource.
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Specificații

ISBN-13: 9780471392002
ISBN-10: 0471392006
Pagini: 420
Dimensiuni: 161 x 240 x 27 mm
Greutate: 0.78 kg
Ediția:New.
Editura: Wiley
Locul publicării:Hoboken, United States

Public țintă

Graduate students and researchers. Application engineers using mid– to far–infrared emitters for spectroscopy, astrophysics, environmental monitoring, and process control.

Descriere

Infrared lasers have tremendous commerical applications for three main reasons. For fiber optics, the laser's long wavelenght make it capbale of traveling disatances without the need for frequent amplification. The transatlantic cables use these lasers as their source.