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Pixel Detectors, Leonardo Rossi; Peter Fischer; Tilman Rohe; Norber


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Автор: Leonardo Rossi; Peter Fischer; Tilman Rohe; Norber
Название:  Pixel Detectors
ISBN: 9783642066528
Издательство: Springer
Классификация:




ISBN-10: 3642066526
Обложка/Формат: Paperback
Страницы: 304
Вес: 0.44 кг.
Дата издания: 12.02.2010
Серия: Particle Acceleration and Detection
Язык: English
Размер: 234 x 156 x 17
Основная тема: Physics
Подзаголовок: From Fundamentals to Applications
Ссылка на Издательство: Link
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Поставляется из: Германии
Описание: Pixel detectors are a particularly important class of particle and radiation detection devices. This book is a general purpose introduction into the fundamental principles of pixel detector technology and semiconductor-based hybrid pixel devices.


Semiconductor Radiation Detectors / Device Physics

Автор: Lutz Gerhard
Название: Semiconductor Radiation Detectors / Device Physics
ISBN: 3540716785 ISBN-13(EAN): 9783540716785
Издательство: Springer
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Цена: 14365.00 р.
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Описание: Starting from basic principles, the author, whose own contributions to these developments have been significant, describes the rapidly growing field of modern semiconductor detectors used for energy and position measurement radiation. This development was stimulated by requirements in elementary particle physics where it has led to important scientific discoveries. It has now spread to many other fields of science and technology. The book is written in a didactic way and includes an introduction to semiconductor physics. The working principles of semiconductor radiation detectors are explained in an intuitive way, followed by formal quantitative analysis. Broad coverage is also given to electronic signal readout and to the subject of radiation damage. The book is the first to comprehensively cover the semiconductor radiation detectors currently in use. It is useful as a teaching guide and as a reference work for research and applications.

High Resolution Imaging, Detectors

Название: High Resolution Imaging, Detectors
ISBN: 9814613274 ISBN-13(EAN): 9789814613279
Издательство: Taylor&Francis
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Цена: 17609.00 р.
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Описание: Interferometric observations need snapshots of very high time resolution of the order of (i) frame integration of about 100 Hz or (ii) photon-recording rates of several megahertz (MHz). Detectors play a key role in astronomical observations, and since the explanation of the photoelectric effect by Albert Einstein, the technology has evolved rather fast. The present-day technology has made it possible to develop large-format complementary metal oxide–semiconductor (CMOS) and charge-coupled device (CCD) array mosaics, orthogonal transfer CCDs, electron-multiplication CCDs, electron-avalanche photodiode arrays, and quantum-well infrared (IR) photon detectors. The requirements to develop artifact-free photon shot noise-limited images are higher sensitivity and quantum efficiency, reduced noise that includes dark current, read-out and amplifier noise, smaller point-spread functions, and higher spectral bandwidth. This book aims to address such systems, technologies and design, evaluation and calibration, control electronics, scientific applications, and results. One of the fastest growing applications is signal sensing, especially wavefront sensing for adaptive optics and fringe tracking for interferometry, which is important for long-baseline optical interferometry. The coherence time of the atmosphere is a highly variable parameter. Depending upon the high velocity wind, it varies from <1 ms to 0.1 s. The exposure times are to be selected accordingly, to maximize the signal-to-noise ratio, as well as to freeze the fringe pattern. A large-format photon-counting system, which is an essential tool in the application of optical interferometric imaging, allows accurate photon centroiding and provides the dynamic range needed for measurements of source characteristics. The advent of high-quantum efficiency photon-counting systems vastly increases the sensitivity of high-resolution imaging techniques. Such systems raise the hope of making diffraction-limited images of objects as faint as ~15–16 m_v (visual magnitude). This book deals with the fundamentals of the important aspects of high-resolution imaging, such as electromagnetic radiations, particularly, optical wavelengths and their distortions due to optical elements and Earth’s atmosphere while passing through a detector; semiconductor physics; lasers; fiber optics; photon-detection process; photodetectors; charge-transfer devices; photon-counting devices in visible wavelength; radiation detectors in infrared wavelengths; and detecting systems for high energies.


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