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Annihilation of low energy antiprotons in silicon
The goal of the AE$\mathrm{\bar{g}}$IS experiment at the Antiproton Decelerator (AD) at CERN, is to measure directly the Earth's gravitational acceleration on antimatter. To achieve this goal, the AE$\mathrm{\bar{g}}$IS collaboration will produce a pulsed, cold (100 mK) antihydrogen beam with a...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2013
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/1630358 |
_version_ | 1780934196497219584 |
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author | Aghion, S. Ahlén, O. Belov, A.S. Bonomi, G. Bräunig, P. Bremer, J. S.Brusa, R. Burghart, G. Cabaret, L. Caccia, M. Canali, C. Caravita, R. Castelli, F. Cerchiari, G. Cialdi, S. Comparat, D. Consolatia, G. Derking, J.H. Di Domizio, S. Di Noto, L. Doser, M. Dudarev, A. Ferraguta, 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. Krasnický, D. Lagomarsino, V. Magnani, A. Mariazzi, S. Matveevd, V.A. Moia, F. Nebbia, G. Nédélec, P. Pacifico, N. Petrácek, V. Prelz, F. Prevedelli, M. Regenfus, C. Riccardi, C. Røhne, O. Rotondi, A. Sandaker, H. Sosa, A. Subieta Vasquez, M.A. Špacek, M. Testera, G. Welsch, C.P. Zavatarelli, S. |
author_facet | Aghion, S. Ahlén, O. Belov, A.S. Bonomi, G. Bräunig, P. Bremer, J. S.Brusa, R. Burghart, G. Cabaret, L. Caccia, M. Canali, C. Caravita, R. Castelli, F. Cerchiari, G. Cialdi, S. Comparat, D. Consolatia, G. Derking, J.H. Di Domizio, S. Di Noto, L. Doser, M. Dudarev, A. Ferraguta, 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. Krasnický, D. Lagomarsino, V. Magnani, A. Mariazzi, S. Matveevd, V.A. Moia, F. Nebbia, G. Nédélec, P. Pacifico, N. Petrácek, V. Prelz, F. Prevedelli, M. Regenfus, C. Riccardi, C. Røhne, O. Rotondi, A. Sandaker, H. Sosa, A. Subieta Vasquez, M.A. Špacek, M. Testera, G. Welsch, C.P. Zavatarelli, S. |
author_sort | Aghion, S. |
collection | CERN |
description | The goal of the AE$\mathrm{\bar{g}}$IS experiment at the Antiproton Decelerator (AD) at CERN, is to measure directly the Earth's gravitational acceleration on antimatter. To achieve this goal, the AE$\mathrm{\bar{g}}$IS collaboration will produce a pulsed, cold (100 mK) antihydrogen beam with a velocity of a few 100 m/s and measure the magnitude of the vertical deflection of the beam from a straight path. 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, to the best of our knowledge, the first direct measurement of antiproton annihilation in a segmented silicon sensor, the first step towards designing a position sensitive silicon detector for the AE$\mathrm{\bar{g}}$IS experiment. We also present a first comparison with Monte Carlo simulations (GEANT4) for antiproton energies below 5 MeV |
id | cern-1630358 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2013 |
record_format | invenio |
spelling | cern-16303582022-02-02T07:24:25Zhttp://cds.cern.ch/record/1630358engAghion, S.Ahlén, O.Belov, A.S.Bonomi, G.Bräunig, P.Bremer, J.S.Brusa, R.Burghart, G.Cabaret, L.Caccia, M.Canali, C.Caravita, R.Castelli, F.Cerchiari, G.Cialdi, S.Comparat, D.Consolatia, G.Derking, J.H.Di Domizio, S.Di Noto, L.Doser, M.Dudarev, A.Ferraguta, 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.Krasnický, D.Lagomarsino, V.Magnani, A.Mariazzi, S.Matveevd, V.A.Moia, F.Nebbia, G.Nédélec, P.Pacifico, N.Petrácek, V.Prelz, F.Prevedelli, M.Regenfus, C.Riccardi, C.Røhne, O.Rotondi, A.Sandaker, H.Sosa, A.Subieta Vasquez, M.A.Špacek, M.Testera, G.Welsch, C.P.Zavatarelli, S.Annihilation of low energy antiprotons in siliconDetectors and Experimental TechniquesThe goal of the AE$\mathrm{\bar{g}}$IS experiment at the Antiproton Decelerator (AD) at CERN, is to measure directly the Earth's gravitational acceleration on antimatter. To achieve this goal, the AE$\mathrm{\bar{g}}$IS collaboration will produce a pulsed, cold (100 mK) antihydrogen beam with a velocity of a few 100 m/s and measure the magnitude of the vertical deflection of the beam from a straight path. 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, to the best of our knowledge, the first direct measurement of antiproton annihilation in a segmented silicon sensor, the first step towards designing a position sensitive silicon detector for the AE$\mathrm{\bar{g}}$IS experiment. We also present a first comparison with Monte Carlo simulations (GEANT4) for antiproton energies below 5 MeVThe goal of the AE$\mathrm{\bar{g}}$IS experiment at the Antiproton Decelerator (AD) at CERN, is to measure directly the Earth's gravitational acceleration on antimatter. To achieve this goal, the AE$\mathrm{\bar{g}}$IS collaboration will produce a pulsed, cold (100 mK) antihydrogen beam with a velocity of a few 100 m/s and measure the magnitude of the vertical deflection of the beam from a straight path. 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, to the best of our knowledge, the first direct measurement of antiproton annihilation in a segmented silicon sensor, the first step towards designing a position sensitive silicon detector for the AE$\mathrm{\bar{g}}$IS experiment. We also present a first comparison with Monte Carlo simulations (GEANT4) for antiproton energies below 5 MeVarXiv:1311.4982oai:cds.cern.ch:16303582013-11-20 |
spellingShingle | Detectors and Experimental Techniques Aghion, S. Ahlén, O. Belov, A.S. Bonomi, G. Bräunig, P. Bremer, J. S.Brusa, R. Burghart, G. Cabaret, L. Caccia, M. Canali, C. Caravita, R. Castelli, F. Cerchiari, G. Cialdi, S. Comparat, D. Consolatia, G. Derking, J.H. Di Domizio, S. Di Noto, L. Doser, M. Dudarev, A. Ferraguta, 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. Krasnický, D. Lagomarsino, V. Magnani, A. Mariazzi, S. Matveevd, V.A. Moia, F. Nebbia, G. Nédélec, P. Pacifico, N. Petrácek, V. Prelz, F. Prevedelli, M. Regenfus, C. Riccardi, C. Røhne, O. Rotondi, A. Sandaker, H. Sosa, A. Subieta Vasquez, M.A. Špacek, M. Testera, G. Welsch, C.P. Zavatarelli, S. Annihilation of low energy antiprotons in silicon |
title | Annihilation of low energy antiprotons in silicon |
title_full | Annihilation of low energy antiprotons in silicon |
title_fullStr | Annihilation of low energy antiprotons in silicon |
title_full_unstemmed | Annihilation of low energy antiprotons in silicon |
title_short | Annihilation of low energy antiprotons in silicon |
title_sort | annihilation of low energy antiprotons in silicon |
topic | Detectors and Experimental Techniques |
url | http://cds.cern.ch/record/1630358 |
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