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Semiconductor lasers have important applications in numerous
fields, including engineering, biology, chemistry and medicine.
They form the backbone of the optical telecommunications
infrastructure supporting the internet, and are used in information
storage devices, bar-code scanners, laser printers and many other
everyday products. Semiconductor lasers: Fundamentals and
applications is a comprehensive review of this vital technology.
Part one introduces the fundamentals of semiconductor lasers,
beginning with key principles before going on to discuss photonic
crystal lasers, high power semiconductor lasers and laser beams,
and the use of semiconductor lasers in ultrafast pulse generation.
Part two then reviews applications of visible and near-infrared
emitting lasers. Nonpolar and semipolar GaN-based lasers, advanced
self-assembled InAs quantum dot lasers and vertical cavity surface
emitting lasers are all considered, in addition to semiconductor
disk and hybrid silicon lasers. Finally, applications of mid- and
far-infrared emitting lasers are the focus of part three. Topics
covered include GaSb-based type I quantum well diode lasers,
interband cascade and terahertz quantum cascade lasers, whispering
gallery mode lasers and tunable mid-infrared laser absorption
spectroscopy.
With its distinguished editors and international team of expert
contributors, Semiconductor lasers is a valuable guide for all
those involved in the design, operation and application of these
important lasers, including laser and telecommunications engineers,
scientists working in biology and chemistry, medical practitioners,
and academics working in this field.
Provides a comprehensive review of semiconductor lasers and their
applications in engineering, biology, chemistry and
medicineDiscusses photonic crystal lasers, high power semiconductor
lasers and laser beams, and the use of semiconductor lasers in
ultrafast pulse generationReviews applications of visible and
near-infrared emitting lasers and mid- and far-infrared emitting
lasers
Mid-infrared Optoelectronics: Materials, Devices, and Applications
addresses the new materials, devices and applications that have
emerged over the last decade, along with exciting areas of
research. Sections cover fundamentals, light sources,
photodetectors, new approaches, and the application of mid-IR
devices, with sections discussing LEDs, laser diodes, and quantum
cascade lasers, mid-infrared optoelectronics, emerging research
areas, dilute bismide and nitride alloys, Group-IV materials,
gallium nitride heterostructures, and new nonlinear materials.
Finally, the most relevant applications of mid-infrared devices are
reviewed in industry, gas sensing, spectroscopy, and imaging. This
book presents a key reference for materials scientists, engineers
and professionals working in R&D in the area of semiconductors
and optoelectronics.
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Nadine Gordimer
Paperback
(2)
R205
R168
Discovery Miles 1 680
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