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author Aghion, S
Ahlen, O
Belov, A S
Bonomi, G
Bräunig, P
Bremer, J
Brusa, R S
Burghart, G
Cabaret, L
Caccia, M
Canali, C
Caravita, R
Castelli, F
Cerchiari, G
Cialdi, S
Comparat, D
Consolati, G
Derking, J H
Domizio, S Di
Noto, L Di
Doser, M
Dudarev, A
Ferragut, R
Fontana, A
Genova, P
Giammarchi, M
Gligorova, A
Gninenko, S N
Haider, S
Harasimowicz, J
Huse, T
Jordan, E
Jørgensen, L V
Kaltenbacher, T
Kellerbauer, A
Knecht, A
Krasnicky, D
Lagomarsino, V
Magnani, A
Mariazzi, S
Matveev, V A
Moia, F
Nebbia, G
Nedelec, P
Pacifico, N
Petracek, V
Prelz, F
Prevedelli, M
Regenfus, C
Riccardi, C
R\Ohne, O
Rotondi, A
Sandaker, H
Sosa, A
Vasquez, M A Subieta
Spacek, M
Testera, G
Welsch, C P
Zavatarelli, S
author_facet Aghion, S
Ahlen, O
Belov, A S
Bonomi, G
Bräunig, P
Bremer, J
Brusa, R S
Burghart, G
Cabaret, L
Caccia, M
Canali, C
Caravita, R
Castelli, F
Cerchiari, G
Cialdi, S
Comparat, D
Consolati, G
Derking, J H
Domizio, S Di
Noto, L Di
Doser, M
Dudarev, A
Ferragut, R
Fontana, A
Genova, P
Giammarchi, M
Gligorova, A
Gninenko, S N
Haider, S
Harasimowicz, J
Huse, T
Jordan, E
Jørgensen, L V
Kaltenbacher, T
Kellerbauer, A
Knecht, A
Krasnicky, D
Lagomarsino, V
Magnani, A
Mariazzi, S
Matveev, V A
Moia, F
Nebbia, G
Nedelec, P
Pacifico, N
Petracek, V
Prelz, F
Prevedelli, M
Regenfus, C
Riccardi, C
R\Ohne, O
Rotondi, A
Sandaker, H
Sosa, A
Vasquez, M A Subieta
Spacek, M
Testera, G
Welsch, C P
Zavatarelli, S
author_sort Aghion, S
collection CERN
description The goal of the AEbar gIS experiment at the Antiproton Decelerator (AD) at CERN, is to measure directly the Earth's gravitational acceleration on antimatter by measuring the free fall of a pulsed, cold antihydrogen beam. The final position of the falling antihydrogen will be detected by a position sensitive detector. This detector will consist of an active silicon part, where the annihilations take place, followed by an emulsion part. Together, they allow to achieve 1% precision on the measurement of bar g with about 600 reconstructed and time tagged annihilations. We present here the prospects for the development of the AEbar gIS silicon position sentive detector and the results from the first beam tests on a monolithic silicon pixel sensor, along with a comparison to Monte Carlo simulations.
id oai-inspirehep.net-1303174
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling oai-inspirehep.net-13031742022-08-10T20:11:06Zdoi:10.1088/1748-0221/9/06/P06020http://cds.cern.ch/record/2003115engAghion, SAhlen, OBelov, A SBonomi, GBräunig, PBremer, JBrusa, R SBurghart, GCabaret, LCaccia, MCanali, CCaravita, RCastelli, FCerchiari, GCialdi, SComparat, DConsolati, GDerking, J HDomizio, S DiNoto, L DiDoser, MDudarev, AFerragut, RFontana, AGenova, PGiammarchi, MGligorova, AGninenko, S NHaider, SHarasimowicz, JHuse, TJordan, EJørgensen, L VKaltenbacher, TKellerbauer, AKnecht, AKrasnicky, DLagomarsino, VMagnani, AMariazzi, SMatveev, V AMoia, FNebbia, GNedelec, PPacifico, NPetracek, VPrelz, FPrevedelli, MRegenfus, CRiccardi, CR\Ohne, ORotondi, ASandaker, HSosa, AVasquez, M A SubietaSpacek, MTestera, GWelsch, C PZavatarelli, SDetection of low energy antiproton annihilations in a segmented silicon detectorDetectors and Experimental TechniquesThe goal of the AEbar gIS experiment at the Antiproton Decelerator (AD) at CERN, is to measure directly the Earth's gravitational acceleration on antimatter by measuring the free fall of a pulsed, cold antihydrogen beam. The final position of the falling antihydrogen will be detected by a position sensitive detector. This detector will consist of an active silicon part, where the annihilations take place, followed by an emulsion part. Together, they allow to achieve 1% precision on the measurement of bar g with about 600 reconstructed and time tagged annihilations. We present here the prospects for the development of the AEbar gIS silicon position sentive detector and the results from the first beam tests on a monolithic silicon pixel sensor, along with a comparison to Monte Carlo simulations.oai:inspirehep.net:13031742014
spellingShingle Detectors and Experimental Techniques
Aghion, S
Ahlen, O
Belov, A S
Bonomi, G
Bräunig, P
Bremer, J
Brusa, R S
Burghart, G
Cabaret, L
Caccia, M
Canali, C
Caravita, R
Castelli, F
Cerchiari, G
Cialdi, S
Comparat, D
Consolati, G
Derking, J H
Domizio, S Di
Noto, L Di
Doser, M
Dudarev, A
Ferragut, R
Fontana, A
Genova, P
Giammarchi, M
Gligorova, A
Gninenko, S N
Haider, S
Harasimowicz, J
Huse, T
Jordan, E
Jørgensen, L V
Kaltenbacher, T
Kellerbauer, A
Knecht, A
Krasnicky, D
Lagomarsino, V
Magnani, A
Mariazzi, S
Matveev, V A
Moia, F
Nebbia, G
Nedelec, P
Pacifico, N
Petracek, V
Prelz, F
Prevedelli, M
Regenfus, C
Riccardi, C
R\Ohne, O
Rotondi, A
Sandaker, H
Sosa, A
Vasquez, M A Subieta
Spacek, M
Testera, G
Welsch, C P
Zavatarelli, S
Detection of low energy antiproton annihilations in a segmented silicon detector
title Detection of low energy antiproton annihilations in a segmented silicon detector
title_full Detection of low energy antiproton annihilations in a segmented silicon detector
title_fullStr Detection of low energy antiproton annihilations in a segmented silicon detector
title_full_unstemmed Detection of low energy antiproton annihilations in a segmented silicon detector
title_short Detection of low energy antiproton annihilations in a segmented silicon detector
title_sort detection of low energy antiproton annihilations in a segmented silicon detector
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/9/06/P06020
http://cds.cern.ch/record/2003115
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