Radiation Sensors with 3D Electrodes (PDF)
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Written by the leading names in this field, this book covers the technical properties, fabrication details, measurement results and applications of three-dimensional silicon radiation sensors. It explains the essential features of silicon particle detectors, interactions of radiation with matter, radiation damage effects, and micro-fabrication.
Gian-Franco Dalla Betta is a Full Professor of Electronics at the University of Trento, Italy. Born in Venice, Italy, in 1967. He received the M.S. degree in electronics engineering from the University of Bologna, Italy, in 1992 and the Ph.D. in microelectronics from the University of Trento, Italy, in 1997. Since 1997 to 2002, he was with the Institute for Scientific and Technological Research (ITC-IRST) of Trento, Italy, as a Researcher and since November 2002, he moved to the University of Trento. His main research expertise is in design, simulation, fabrication and experimental characterization of silicon integrated devices and circuits, with emphasis on radiation sensors and 3D sensors of which he was among the first to
Sherwood Ira Parker (1932 - 2018) was a pioneer in experimental physics. He developed the first scientific silicon readout integrated circuit (Microplex), the first monolithic charged particle sensors, and the first 3D silicon detectors used to prove the existence of the Higgs Boson particle. He collaborated with many leading research scientists and laboratories around the world including CERN, FERMI and SLAC. Dr. Parker also developed detectors for use in digital mammography and held seven patents. These achievements were recognized when he was awarded the Glenn Knoll Radiation Instrumentation Outstanding Achievement Award in 2015 from the IEEE Nuclear and Plasma Sciences Society. And despite severe mobility impairments caused by ALS, he continued contributing to key innovative work on high-speed signals with 3D radiation detectors.
- Autoren: Cinzia Da Vià , Gian-Franco Dalla Betta , Sherwood Parker
- 2019, 1. Auflage, 240 Seiten, Englisch
- Verlag: Taylor & Francis
- ISBN-10: 0429621590
- ISBN-13: 9780429621598
- Erscheinungsdatum: 17.01.2019
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- Dateiformat: PDF
- Größe: 12 MB
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