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Produktinformationen "Nuclear Electronics with Quantum Cryogenic Detectors"

"Building upon the first edition of Nuclear Electronics (Wiley 2005), the author returns with a focus on the technology of cryogenic detectors. Those of the quantum mechanical nature at ultra-low temperatures provide the best resolution, accuracy, and speed as radiation measurement tools. Providing reliable, powerful, and ultimately high-resolution diagnostic test results, a new generation of quantum cryogenic devices has appeared which are essential for Big Science (Astrophysics, Cosmology). For example, they are already installed in several large ground telescopes and will constitute base technology in the high-resolution spectrometer camera onboard the next X-ray telescope built by the European Space Agency (ESA), Athena, to be launched in 2032. However, analysis has shown that quantum cryogenic detectors are not used solely as stand-alone instruments but are often paired with semiconductor large frame cameras which provide a broad picture of a sky or chemical sample. This new edition considers the interaction of semiconductor detectors with quantum devices to produce an essential one-stop reference"--

H | B | T | Gramm
286 mm | 221 mm | 29 mm | 1.381 kg

Erscheinungsjahr
2022

Ausgabe
2

FSK
0

Ausgabe
Hardcover

Verlag
John Wiley Sons

ISBN-10
1119834686

ISBN-13
9781119834687

Autor
Polushkin, Vladimir

Sprache
Englisch

Seitenanzahl
448

Verantwortliche Person gemäß Art. 16 GPSR
Wiley-VCH GmbH, Boschstrasse 12, 69469, Weinheim, DE, product_safety@wiley.com

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Polushkin, Vladimir

Autor/in

Polushkin, Vladimir

Vladimir Polushkin, MA, MBA, PhD, is a Business and Technological Consultant in High-Precision Instrumentation Industries and Sensorics, UK. He received his MA with distinction in Applied Physics from Tomsk Technical University (Russia) Division of Applied Physics, an MBA with distinction from Oxford Brookes University, UK, and a PhD in Applied Physics from Kiev University. He began his scientific career with the Joint Institute for Nuclear Research, Russia in the Laboratory of Neutron Physics, which was headed by Nobel Prize winner I.M. Frank.

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