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author Scampoli, P
Aghion, S
Ahlen, O
Amsler, C
Ariga, A
Ariga, T
Belov, A S
Berggren, K
Bonomi, G
Bräunig, P
Bremer, J
Brusa, R S
Cabaret, L
Caccia, M
Canali, C
Caravita, R
Castelli, F
Cerchiari, G
Cialdi, S
Comparat, D
Consolati, G
Derking, H
Di Domizio, S
Di Noto, L
Doser, M
Dudarev, A
Ereditato, A
Ferragut, R
Fontana, A
Genova, P
Giammarchi, M
Gligorova, A
Gninenko, S N
Haider, S
Huse, T
Jordan, E
Jørgensen, L V
Kaltenbacher, T
Kawada, J
Kellerbauer, A
Kimura, M
Knecht, A
Krasnicky, D
Lagomarsino, V
Lehner, S
Malbrunot, C
Mariazzi, S
Matveev, V A
Moia, F
Nebbia, G
Nedelec, P
Oberthaler, M K
Pacifico, N
Petracek, V
Pistillo, C
Prelz, F
Prevedelli, M
Regenfus, C
Riccardi, C
Røhne, O
Rotondi, A
Sandaker, H
Storey, J
Subieta Vasquez, M A
Spacek, M
Testera, G
Wildmann, E
Zavatarelli, S
Zmeskal, J
author_facet Scampoli, P
Aghion, S
Ahlen, O
Amsler, C
Ariga, A
Ariga, T
Belov, A S
Berggren, K
Bonomi, G
Bräunig, P
Bremer, J
Brusa, R S
Cabaret, L
Caccia, M
Canali, C
Caravita, R
Castelli, F
Cerchiari, G
Cialdi, S
Comparat, D
Consolati, G
Derking, H
Di Domizio, S
Di Noto, L
Doser, M
Dudarev, A
Ereditato, A
Ferragut, R
Fontana, A
Genova, P
Giammarchi, M
Gligorova, A
Gninenko, S N
Haider, S
Huse, T
Jordan, E
Jørgensen, L V
Kaltenbacher, T
Kawada, J
Kellerbauer, A
Kimura, M
Knecht, A
Krasnicky, D
Lagomarsino, V
Lehner, S
Malbrunot, C
Mariazzi, S
Matveev, V A
Moia, F
Nebbia, G
Nedelec, P
Oberthaler, M K
Pacifico, N
Petracek, V
Pistillo, C
Prelz, F
Prevedelli, M
Regenfus, C
Riccardi, C
Røhne, O
Rotondi, A
Sandaker, H
Storey, J
Subieta Vasquez, M A
Spacek, M
Testera, G
Wildmann, E
Zavatarelli, S
Zmeskal, J
author_sort Scampoli, P
collection CERN
description For the first time the AEgIS (Antihydrogen Experiment: Gravity, Interferometry, Spectroscopy) experiment will measure the Earth's local gravitational acceleration g on antimatter through the evaluation of the vertical displacement of an antihydrogen horizontal beam. This will be a model independent test of the Weak Equivalence Principle at the base of the general relativity. The initial goal of a g measurement with a relative uncertainty of 1% will be achieved with less than 1000 detected antihydrogens, provided that their vertical position could be determined with a precision of a few micrometers. An emulsion based detector is very suitable for this purpose featuring an intrinsic sub-micrometric spatial resolution. Nevertheless, the AEgIS experiment requires unprecedented operational conditions for this type of detector, namely vacuum environment and very low temperature. An intense R&D; activity is presently going on to optimize the detector for the AEgIS experimental requirements with rather encouraging results.
id oai-inspirehep.net-1327615
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling oai-inspirehep.net-13276152019-09-30T06:29:59Zdoi:10.1088/1748-0221/9/01/C01061http://cds.cern.ch/record/2110686engScampoli, PAghion, SAhlen, OAmsler, CAriga, AAriga, TBelov, A SBerggren, KBonomi, GBräunig, PBremer, JBrusa, R SCabaret, LCaccia, MCanali, CCaravita, RCastelli, FCerchiari, GCialdi, SComparat, DConsolati, GDerking, HDi Domizio, SDi Noto, LDoser, MDudarev, AEreditato, AFerragut, RFontana, AGenova, PGiammarchi, MGligorova, AGninenko, S NHaider, SHuse, TJordan, EJørgensen, L VKaltenbacher, TKawada, JKellerbauer, AKimura, MKnecht, AKrasnicky, DLagomarsino, VLehner, SMalbrunot, CMariazzi, SMatveev, V AMoia, FNebbia, GNedelec, POberthaler, M KPacifico, NPetracek, VPistillo, CPrelz, FPrevedelli, MRegenfus, CRiccardi, CRøhne, ORotondi, ASandaker, HStorey, JSubieta Vasquez, M ASpacek, MTestera, GWildmann, EZavatarelli, SZmeskal, JDevelopment of nuclear emulsions operating in vacuum for the AEgIS experimentDetectors and Experimental TechniquesFor the first time the AEgIS (Antihydrogen Experiment: Gravity, Interferometry, Spectroscopy) experiment will measure the Earth's local gravitational acceleration g on antimatter through the evaluation of the vertical displacement of an antihydrogen horizontal beam. This will be a model independent test of the Weak Equivalence Principle at the base of the general relativity. The initial goal of a g measurement with a relative uncertainty of 1% will be achieved with less than 1000 detected antihydrogens, provided that their vertical position could be determined with a precision of a few micrometers. An emulsion based detector is very suitable for this purpose featuring an intrinsic sub-micrometric spatial resolution. Nevertheless, the AEgIS experiment requires unprecedented operational conditions for this type of detector, namely vacuum environment and very low temperature. An intense R&D; activity is presently going on to optimize the detector for the AEgIS experimental requirements with rather encouraging results.oai:inspirehep.net:13276152014
spellingShingle Detectors and Experimental Techniques
Scampoli, P
Aghion, S
Ahlen, O
Amsler, C
Ariga, A
Ariga, T
Belov, A S
Berggren, K
Bonomi, G
Bräunig, P
Bremer, J
Brusa, R S
Cabaret, L
Caccia, M
Canali, C
Caravita, R
Castelli, F
Cerchiari, G
Cialdi, S
Comparat, D
Consolati, G
Derking, H
Di Domizio, S
Di Noto, L
Doser, M
Dudarev, A
Ereditato, A
Ferragut, R
Fontana, A
Genova, P
Giammarchi, M
Gligorova, A
Gninenko, S N
Haider, S
Huse, T
Jordan, E
Jørgensen, L V
Kaltenbacher, T
Kawada, J
Kellerbauer, A
Kimura, M
Knecht, A
Krasnicky, D
Lagomarsino, V
Lehner, S
Malbrunot, C
Mariazzi, S
Matveev, V A
Moia, F
Nebbia, G
Nedelec, P
Oberthaler, M K
Pacifico, N
Petracek, V
Pistillo, C
Prelz, F
Prevedelli, M
Regenfus, C
Riccardi, C
Røhne, O
Rotondi, A
Sandaker, H
Storey, J
Subieta Vasquez, M A
Spacek, M
Testera, G
Wildmann, E
Zavatarelli, S
Zmeskal, J
Development of nuclear emulsions operating in vacuum for the AEgIS experiment
title Development of nuclear emulsions operating in vacuum for the AEgIS experiment
title_full Development of nuclear emulsions operating in vacuum for the AEgIS experiment
title_fullStr Development of nuclear emulsions operating in vacuum for the AEgIS experiment
title_full_unstemmed Development of nuclear emulsions operating in vacuum for the AEgIS experiment
title_short Development of nuclear emulsions operating in vacuum for the AEgIS experiment
title_sort development of nuclear emulsions operating in vacuum for the aegis experiment
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/9/01/C01061
http://cds.cern.ch/record/2110686
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