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Terahertz Optoelectronics: Topics in Applied Physics, cartea 97

Editat de Kiyomi Sakai
en Limba Engleză Hardback – 13 iun 2005
This book presents recent and important developments in the field of terahertz radiation, with a particular focus on pulsed terahertz radiation. Situated in the gap between electronics and optics, the terahertz frequency range of the electro-magnetic spectrum has long been neglected by scientists and engineers due to a lack of efficient and affordable terahertz sources and detectors. The advent of femtosecond lasers in the 1980s and photoconductive switches in 1984 have made the terahertz gap accessible, while at the same time advances in electronics and optics have made it narrower. Research activities in terahertz frequencies have intensified dramatically since that time, funding has increased by a factor of 100 in the last decade. The reviews by leading experts are of interest to researchers and engineers as well as advanced students.
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Specificații

ISBN-13: 9783540200130
ISBN-10: 3540200134
Pagini: 404
Ilustrații: XIII, 389 p.
Dimensiuni: 155 x 235 x 27 mm
Greutate: 0.79 kg
Ediția:2005
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Topics in Applied Physics

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Introduction to Terahertz Pulses.- Generation and Detection of Broadband Pulsed Terahertz Radiation.- Terahertz Radiation from Semiconductor Surfaces.- Enhanced Generation of Terahertz Radiation from Semiconductor Surfaces with External Magnetic Field.- THz Radiation from Bulk and Quantum Semiconductor Structures.- Generation of CW Terahertz Radiation with Photomixing.- Terahertz Time-domain Spectroscopy.- Terahertz Optics in Strongly Correlated Electron Systems.- Terahertz Imaging.- Subject Index.

Textul de pe ultima copertă

The book presents recent and important developments in the field of terahertz radiation with a particular focus on pulsed terahertz radiation. Situated in the gap between electronics and optics, the terahertz frequency range of the electro-magnetic spectrum has long been neglected by scientists and engineers due to a lack of efficient and affordable terahertz sources and detectors. The advent of femtosecond lasers in the 1980s and photoconductive switches in 1984 have made the terahertz gap accessible, while at the same time advances in electronics and optics have made it narrower. Research activities in terahertz frequencies have risen dramatically since that time, funding has increased by a factor of 100 in the last decade. The reviews by leading experts are of interest to researchers and engineers as well as advanced students.

Caracteristici

Recent and important developments in the field of terahertz radiation Application oriented contents Latest references