AbstractWe present here a new application of silicon sensors aimed at the direct detection of antinucleons annihilations taking place inside the sensor׳s volume. Such detectors are interesting particularly for the measurement of antimatter properties and will be used as part of the gravity measurement module in the View the MathML source experiment at the CERN Antiproton Decelerator. One of the goals of the View the MathML source experiment is to measure the gravitational acceleration of antihydrogen with 1% precision. Three different silicon sensor geometries have been tested with an antiproton beam to investigate their properties as annihilation detection devices: strip planar, 3D pixels and monolithic pixel planar. In all cases we were successfully detecting annihilations taking place in the sensor and we were able to make a first characterization of the clusters and tracks.

Investigation of silicon sensors for their use as antiproton annihilation detectors

GENOVA, PABLO;MAGNANI, ALICE;RICCARDI, CRISTINA;ROTONDI, ALBERTO;
2014-01-01

Abstract

AbstractWe present here a new application of silicon sensors aimed at the direct detection of antinucleons annihilations taking place inside the sensor׳s volume. Such detectors are interesting particularly for the measurement of antimatter properties and will be used as part of the gravity measurement module in the View the MathML source experiment at the CERN Antiproton Decelerator. One of the goals of the View the MathML source experiment is to measure the gravitational acceleration of antihydrogen with 1% precision. Three different silicon sensor geometries have been tested with an antiproton beam to investigate their properties as annihilation detection devices: strip planar, 3D pixels and monolithic pixel planar. In all cases we were successfully detecting annihilations taking place in the sensor and we were able to make a first characterization of the clusters and tracks.
2014
Proceedings of the 9th International "Hiroshima" Symposium on Development and Application of Semiconductor Tracking Detectors — International Conference Center, Hiroshima, Japan, 2 - 5 September 2013
Applied Physics/Condensed Matter/Materials Science encompasses the resources of three related disciplines: Applied Physics, Condensed Matter Physics, and Materials Science. The applied physics resources are concerned with the applications of topics in condensed matter as well as optics, vacuum science, lasers, electronics, cryogenics, magnets and magnetism, acoustical physics and mechanics. The condensed matter physics resources are concerned with the study of the structure and the thermal, mechanical, electrical, magnetic and optical properties of condensed matter. They include superconductivity, surfaces, interfaces, thin films, dielectrics, ferroelectrics and semiconductors. The materials science resources are concerned with the physics and chemistry of materials and include ceramics, composites, alloys, metals and metallurgy, nanotechnology, nuclear materials, adhesion and adhesives. Resources dealing with polymeric materials are listed in the Organic Chemistry/Polymer Science category.
Comitato scientifico
Inglese
contributo
Proceedings of the 9th International "Hiroshima" Symposium on Development and Application of Semiconductor Tracking Detectors — International Conference Center, Hiroshima, Japan, 2 - 5 September 2013
2-5 septembre 2013
Hiroshima
Internazionale
STAMPA
765
161
166
6
Nuclear Physics Detectors, Silicon detectors, Antiproton Detectors
http://www.sciencedirect.com/science/article/pii/S0168900214007438
none
Pacifico, N.; Aghion, S.; Ahlén, O.; Belov, A. S.; Bonomi, G.; Bräunig, P.; Bremer, J.; Brusa, R. S.; Burghart, G.; Cabaret, L.; Caccia, M.; Canali, C...espandi
273
info:eu-repo/semantics/conferenceObject
67
4 Contributo in Atti di Convegno (Proceeding)::4.1 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1104175
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