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Semiconductor detector systems

Seminars in Nuclear Medicine, 1973
The growing interest in the possible applications of semiconductor radiation detectors in nuclear medicine stems mostly from two features of these devices: high radiation energy resolution and small physical dimensions. Many of these applications utilize semiconductors in place of scintillation detectors in scintiscanners or gamma cameras; others allow
M M, Ter-Pogossian, M E, Phelps
openaire   +2 more sources

Multi Electrode Semiconductor Detectors

Physica Scripta, 1981
Detectors with very high space resolution have been built in our laboratory and tested at CERN in order to investigate their possible use in high energy physics experiments. These detectors consist of thin layers of silicon crystals acting as ionization chambers.
AMENDOLIA SR   +17 more
openaire   +2 more sources

Semiconductor neutron detectors

SPIE Proceedings, 2016
Lithium Indium Selenide (LiInSe2) has been under development in RMD Inc. and Fisk University for room temperature thermal neutron detection due to a number of promising properties. The recent advances of the crystal growth, material processing, and detector fabrication technologies allowed us to fabricate large detectors with 100 mm2 active area.
Andrey Gueorguiev   +6 more
openaire   +1 more source

Semiconductor Electron Detectors

IRE Transactions on Nuclear Science, 1961
The properties of p-n junctions made by phosphorus diffusion in 12 000 ? cm p-type silicon have been examined using the Chalk River ? ?2 s -ray spectrometer as a source of monoenergetic electrons. With 200 V reverse bias the depletion layer is thick enough to absorb totally 350 keV electrons.
J. M. McKenzie, G. T. Ewan
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Semiconductor ultraviolet detectors

Journal of Applied Physics, 1996
In this review article a comprehensive analysis of the developments in ultraviolet (UV) detector technology is described. At the beginning, the classification of UV detectors and general requirements imposed on these detectors are presented.
Manijeh Razeghi, Antoni Rogalski
openaire   +1 more source

Scintillators and Semiconductor Detectors

2010
Various processes occur during the detection of ionizing radiation within a scintillator, and proper detection designs are needed [1, 2, 3]. As a consequence of the interaction of radiation with the scintillation material, ionisation and excitation processes arise, and the energy (or part of it) of the incoming radiation is transferred to the atoms and
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Semiconductor Detectors

2021
Nicholas Tsoulfanidis   +1 more
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Semiconductor-Based Detectors

2013
Abstract This chapter presents a broad review of the principle, design, fabrication, operation, and performance of single-photon avalanche diodes (SPADs), and provides a comparative basis to assess the relative merits of the wide variety of devices and techniques covered. Particular attention is paid to the design of and operation of both silicon and
COVA, SERGIO   +4 more
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Compound Semiconductor Detectors

2004
We describe results obtained in a development programme to procure detectors with high sensitivity to hard X-rays. We note where this programme has broad synergies with developments for ground-based astronomy arrays.
David Lumb   +4 more
openaire   +1 more source

Semiconductors as Detectors

2007
Compared with other materials, semiconductors have unique properties that make them very suitable for the detection of ionizing radiation. Furthermore, semiconductors — especially silicon — are the most widely used basic materials for electronic amplifying elements (transistors) and more recently for complete microelectronics circuits. Thus part of the
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