Towards a test of the weak equivalence principle of gravity using anti-hydrogen at CERN

作者: A. Lambrecht , A. M. M. Leite , L. Liszkay , P. Lotrus , D. Lunney

DOI: 10.1109/CPEM.2016.7540781

关键词: PhysicsAntihydrogenGravity (chemistry)AntimatterGravitational fieldParticle physicsGravitationEquivalence principle (geometric)Free fallAtom (measure theory)

摘要: The aim of the GBAR (Gravitational Behavior Antimatter at Rest) experiment is to measure free fall acceleration an antihydrogen atom, in terrestrial gravitational field CERN and therefore test Weak Equivalence Principle with antimatter. local gravity a 1% uncertainty which can be reduced few parts 10−3.

参考文章(20)
Albane Douillet, Paul Indelicato, Ferdinand Schmidt Kaler, Jean-Philippe Karr, Sebastian Wolf, Laurent Hilico, Cooling antihydrogen ions for the free-fall experiment GBAR arXiv: Atomic Physics. ,(2014) , 10.1142/S2010194514602695
A Müllers, S Böttner, D Kolbe, T Diehl, A Koglbauer, M Sattler, M Stappel, R Steinborn, J Walz, G Gabrielse, R Kalra, W S Kolthammer, R P McConnell, P Richerme, D W Fitzakerley, M C George, E A Hessels, C H Storry, M Weel, D Grzonka, W Oelert, , A semiconductor laser system for the production of antihydrogen New Journal of Physics. ,vol. 14, pp. 055009- ,(2012) , 10.1088/1367-2630/14/5/055009
Aldo Antognini, FD Amaro, F Biraben, JMR Cardoso, CAN Conde, DS Covita, A Dax, S Dhawan, LMP Fernandes, TW Hänsch, VW Hughes, Olivier Huot, P Indelicato, L Julien, Paul E Knowles, F Kottmann, Y-W Liu, JAM Lopes, Livia Ludhova, CMB Monteiro, Françoise Mulhauser, F Nez, BN Perry, Randolf Pohl, P Rabinowitz, JMF Dos SANTOs, Lukas A Schaller, Catherine Schwob, D Taqqu, JFCA Veloso, None, Powerful fast triggerable 6 μm laser for the muonic hydrogen 2S-Lamb shift experiment Optics Communications. ,vol. 253, pp. 362- 374 ,(2005) , 10.1016/J.OPTCOM.2005.04.079
G. Dufour, D. B. Cassidy, P. Crivelli, P. Debu, A. Lambrecht, V. V. Nesvizhevsky, S. Reynaud, A. Yu. Voronin, T. E. Wall, Prospects for Studies of the Free Fall and Gravitational Quantum States of Antimatter Advances in High Energy Physics. ,vol. 2015, pp. 379642- ,(2015) , 10.1155/2015/379642
Jochen Walz, Theodor W. Hänsch, A Proposal to Measure Antimatter Gravity Using Ultracold Antihydrogen Atoms General Relativity and Gravitation. ,vol. 36, pp. 561- 570 ,(2004) , 10.1023/B:GERG.0000010730.93408.87
Michael Martin Nieto, T. Goldman, The arguments against ``antigravity'' and the gravitational acceleration of antimatter Physics Reports. ,vol. 205, pp. 221- 281 ,(1991) , 10.1016/0370-1573(91)90138-C
G. Dufour, R. Guérout, A. Lambrecht, V. V. Nesvizhevsky, S. Reynaud, A. Yu. Voronin, Quantum reflection of antihydrogen from nanoporous media Physical Review A. ,vol. 87, pp. 022506- ,(2013) , 10.1103/PHYSREVA.87.022506
L. Liszkay, C. Corbel, P. Perez, P. Desgardin, M.-F. Barthe, T. Ohdaira, R. Suzuki, P. Crivelli, U. Gendotti, A. Rubbia, M. Etienne, A. Walcarius, Positronium reemission yield from mesostructured silica films Applied Physics Letters. ,vol. 92, pp. 063114- ,(2008) , 10.1063/1.2844888
A. Kellerbauer, M. Amoretti, A.S. Belov, G. Bonomi, I. Boscolo, R.S. Brusa, M. Büchner, V.M. Byakov, L. Cabaret, C. Canali, C. Carraro, F. Castelli, S. Cialdi, M. de Combarieu, D. Comparat, G. Consolati, N. Djourelov, M. Doser, G. Drobychev, A. Dupasquier, G. Ferrari, P. Forget, L. Formaro, A. Gervasini, M.G. Giammarchi, S.N. Gninenko, G. Gribakin, S.D. Hogan, M. Jacquey, V. Lagomarsino, G. Manuzio, S. Mariazzi, V.A. Matveev, J.O. Meier, F. Merkt, P. Nedelec, M.K. Oberthaler, P. Pari, M. Prevedelli, F. Quasso, A. Rotondi, D. Sillou, S.V. Stepanov, H.H. Stroke, G. Testera, G.M. Tino, G. Trénec, A. Vairo, J. Vigué, H. Walters, U. Warring, S. Zavatarelli, D.S. Zvezhinskij, Proposed antimatter gravity measurement with an antihydrogen beam Nuclear Instruments & Methods in Physics Research Section B-beam Interactions With Materials and Atoms. ,vol. 266, pp. 351- 356 ,(2008) , 10.1016/J.NIMB.2007.12.010