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Single-Photon Imaging: Springer Series in Optical Sciences, cartea 160

Editat de Peter Seitz, Albert J. P. Theuwissen
en Limba Engleză Hardback – 3 aug 2011
The acquisition and interpretation of images is a central capability in almost all scientific and technological domains. In particular, the acquisition of electromagnetic radiation, in the form of visible light, UV, infrared, X-ray, etc. is of enormous practical importance. The ultimate sensitivity in electronic imaging is the detection of individual photons. With this book, the first comprehensive review of all aspects of single-photon electronic imaging has been created. Topics include theoretical basics, semiconductor fabrication, single-photon detection principles, imager design and applications of different spectral domains. Today, the solid-state fabrication capabilities for several types of image sensors has advanced to a point, where uncoooled single-photon electronic imaging will soon become a consumer product. This book is giving a specialist´s view from different domains to the forthcoming “single-photon imaging” revolution. The various aspects of single-photon imaging are treated by internationally renowned, leading scientists and technologists who have all pioneered their respective fields.
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Specificații

ISBN-13: 9783642184420
ISBN-10: 3642184421
Pagini: 372
Ilustrații: XVIII, 354 p.
Dimensiuni: 160 x 241 x 26 mm
Greutate: 0.72 kg
Ediția:2011
Editura: Springer
Colecția Springer Series in Optical Sciences
Seria Springer Series in Optical Sciences

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Graduate

Cuprins

Fundamentals of noise in optoelectronics.- Semiconductor technology for single-photon image sensing.- Hybrid Avalanche Photodiode Array (APD) Imaging.- Electron Bombarded Semiconductor Image Sensors.- Silicon Photomultipliers, SiPM.- Electron-Multiplying CDs, EMCCD.- Monolithic Single-Photon Avalanche Photodetectors, SPAD.- Single-photon CMOS imaging through bandwidth optimization.- Architectures for low-noise CMOS electronic imaging.- Low-noise electronic imaging with double-gate FETs and charge-modulation devices.- Energy-sensitive single-photon X-ray and particle imaging.- Single-photon imaging for astronomy and aerospace applications.- Single-photon imaging for the life sciences.- Single-photon imaging for time-of-flight range 3D imaging.

Recenzii

From the reviews:
“Single-Photon Imaging is part of the prestigious Springer Series in Optical Sciences and is dedicated to single-photon imaging, a hot topic in optics. The book is clearly written and has striking photos and figures. Each of the fourteen chapters is authored by a famed specialist. … This book should be read by everyone interested in optical imaging.” (Daniela Dragoman, Optics & Photonics News, March, 2012)

Textul de pe ultima copertă

The acquisition and interpretation of images is a central capability in almost all scientific and technological domains. In particular, the acquisition of electromagnetic radiation, in the form of visible light, UV, infrared, X-ray, etc. is of enormous practical importance. The ultimate sensitivity in electronic imaging is the detection of individual photons. With this book, the first comprehensive review of all aspects of single-photon electronic imaging has been created. Topics include theoretical basics, semiconductor fabrication, single-photon detection principles, imager design and applications of different spectral domains. Today, the solid-state fabrication capabilities for several types of image sensors has advanced to a point, where uncoooled single-photon electronic imaging will soon become a consumer product. This book is giving a specialist´s view from different domains to the forthcoming “single-photon imaging” revolution. The various aspects of single-photon imaging are treated by internationally renowned, leading scientists and technologists who have all pioneered their respective fields.

Caracteristici

Uniquely covering all aspects of single-photon electronic imaging Theoretical basics, semiconductor fabrication, imager design, applications included Features beginning single-photon imaging revolution Acquisition and interpretation of electromagnetic radiation (visible light, UV, infrared, X-ray) images in technological domains presented Includes supplementary material: sn.pub/extras