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Development of nuclear emulsions operating in vacuum for the AEgIS experiment

Articolo
Data di Pubblicazione:
2014
Abstract:
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.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Particle identification methods; Particle tracking detectors
Elenco autori:
Scampoli, P.; Aghion, S.; Ahlen, O.; Amsler, C.; Ariga, A.; Ariga, T.; Belov, A. S.; Berggren, K.; Bonomi, G.; Braunig, 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.; Jogensen, 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.; Rohne, O.; Rotondi, A.; Sandaker, H.; Storey, J.; Vasquez, M. A. S.; Spacek, M.; Testera, G.; Wildmann, E.; Zavatarelli, S.; Zmeskal, J.
Autori di Ateneo:
BONOMI Germano
Link alla scheda completa:
https://iris.unibs.it/handle/11379/539637
Pubblicato in:
JOURNAL OF INSTRUMENTATION
Journal
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