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U-Rania : A neutron detector based on μ-rwell technology

Balossino, I. (author)
Institute of High Energy Physics, Chinese Academy of Science,INFN Sezione di Ferrara
Bencivenni, G. (author)
INFN Frascati National Laboratory
Bielowka, P. (author)
Technology Transfer Agency TECHTRA Sp. z o.o.
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Cibinetto, G. (author)
INFN Sezione di Ferrara
Farinelli, R. (author)
INFN Sezione di Ferrara
Felici, G. (author)
INFN Frascati National Laboratory
Garzia, I. (author)
INFN Sezione di Ferrara
Gatta, M. (author)
INFN Frascati National Laboratory
Giacomelli, P. (author)
INFN Section of Bologna
Giovannetti, M. (author)
INFN Frascati National Laboratory
Wilton, R. Hall (author)
European Spallation Source ERIC, Sweden
Lai, C. C. (author)
European Spallation Source ERIC, Sweden
Lavezzi, L. (author)
INFN Section of Torino
Messi, F. (author)
Lund University,Lunds universitet,Kärnfysik,Fysiska institutionen,Institutioner vid LTH,Lunds Tekniska Högskola,Nuclear physics,Department of Physics,Departments at LTH,Faculty of Engineering, LTH
Mezzadri, G. (author)
Institute of High Energy Physics, Chinese Academy of Science,INFN Sezione di Ferrara
Morello, G. (author)
INFN Frascati National Laboratory
Pinamonti, M. (author)
Lener, M. Poli (author)
INFN Frascati National Laboratory
Robinson, L. (author)
European Spallation Source ERIC, Sweden
Scodeggio, M. (author)
INFN Sezione di Ferrara
Svensson, P. O. (author)
European Spallation Source ERIC, Sweden
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 (creator_code:org_t)
2020
2020
English.
In: Journal of Instrumentation. - 1748-0221. ; 15:9
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • In the framework of the ATTRACT-uRANIA project, funded by the European Community, we are developing an innovative neutron imaging detector based on micro-Resistive WELL (μ-RWELL) technology. The μ-RWELL, based on the resistive detector concept, ensuring an efficient spark quenching mechanism, is a highly reliable device. It is composed by two main elements: A readout-PCB and a cathode. The amplification stage for this device is embedded in the readout board through a resistive layer realized by means of an industrial process with DLC (Diamond-Like Carbon). A thin layer of \boro on the copper surface of the catode allows the thermal neutrons detection through the release of \litio and α particles in the active volume. This technology has been developed to be an efficient and convenient alternative to the 3He shortage. The goal of the project is to prove the feasibility of such a novel neutron detector by developing and testing small planar prototypes with readout boards suitably segmented with strip or pad readout, equipped with existing electronics or readout in current mode. Preliminary results from the test with different prototypes, showing a good agreement with the simulation, will be presented together with construction details of the prototypes and the future steps of the project.

Subject headings

NATURVETENSKAP  -- Fysik -- Acceleratorfysik och instrumentering (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Accelerator Physics and Instrumentation (hsv//eng)

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art (subject category)
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