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The Gbar project, or how does antimatter fall?
The Einstein classical Weak Equivalence Principle states that the trajectory of a particle is independent of its composition and internal structure when it is only submitted to gravitational forces. This fundamental principle has never been directly tested with antimatter. However, theoretical model...
Autores principales: | Indelicato, Paul, Chardin, G, Grandemange, P, Lunney, D, Manea, V, Badertscher, A, Crivelli, P, Curioni, A, Marchionni, A, Rossi, B, Rubbia, A, Nesvizhevsky, V, Brook-Roberge, D, Comini, P, Debu, P, Dupre, P, Liszkay, L, Mansoulie, B, Perez, P, Rey, J M, Reymond, B, Ruiz, N, Sacquin, Y, Vallage, B, Biraben, F, Clade, P, Douillet, A, Dufour, G, Guellati, S, Hilico, L, Lambrecht, A, Guerout, R, Karr, J P, Nez, F, Reynaud, S, Szabo, C I, Tran, V Q, Trapateau, J, Mohri, A, Yamazaki, Y, Charlton, M, Eriksson, S, Madsen, N, Werf, D P, Kuroda, N, Torii, H, Nagashima, Y, Schmidt-Kaler, F, Walz, J, Wolf, S, Hervieux, P A, Manfredi, G, Voronin, A, Froelich, P, Wronka, S, Staszczak, M |
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Lenguaje: | eng |
Publicado: |
2014
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1007/s10751-014-1019-6 http://cds.cern.ch/record/2861328 |
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