_version_ 1780962722031075328
author Evans, C
Aghion, S
Amsler, C
Bonomi, G
Brusa, R S
Caccia, M
Caravita, R
Castelli, F
Cerchiari, G
Comparat, D
Consolati, G
Demetrio, A
Di Noto, L
Doser, M
Fani, M
Ferragut, R
Fesel, J
Fontana, A
Gerber, S
Giammarchi, M
Gligorova, A
Guatieri, F
Haider, S
Hinterberger, A
Holmestad, H
Kellerbauer, A
Khalidova, O
Krasnický, D
Lagomarsino, V
Lansonneur, P
Lebrun, P
Malbrunot, C
Mariazzi, S
Marton, J
Matveev, V
Mazzotta, Z
Müller, S R
Nebbia, G
Nedelec, P
Oberthaler, M
Pacifico, N
Pagano, D
Penasa, L
Petracek, V
Prelz, F
Prevedelli, M
Ravelli, L
Rienaecker, B
Robert, J
Røhne, O M
Rotondi, A
Sandaker, H
Santoro, R
Smestad, L
Sorrentino, F
Testera, G
Tietje, I C
Widmann, E
Yzombard, P
Zimmer, C
Zmeskal, J
Zurlo, N
author_facet Evans, C
Aghion, S
Amsler, C
Bonomi, G
Brusa, R S
Caccia, M
Caravita, R
Castelli, F
Cerchiari, G
Comparat, D
Consolati, G
Demetrio, A
Di Noto, L
Doser, M
Fani, M
Ferragut, R
Fesel, J
Fontana, A
Gerber, S
Giammarchi, M
Gligorova, A
Guatieri, F
Haider, S
Hinterberger, A
Holmestad, H
Kellerbauer, A
Khalidova, O
Krasnický, D
Lagomarsino, V
Lansonneur, P
Lebrun, P
Malbrunot, C
Mariazzi, S
Marton, J
Matveev, V
Mazzotta, Z
Müller, S R
Nebbia, G
Nedelec, P
Oberthaler, M
Pacifico, N
Pagano, D
Penasa, L
Petracek, V
Prelz, F
Prevedelli, M
Ravelli, L
Rienaecker, B
Robert, J
Røhne, O M
Rotondi, A
Sandaker, H
Santoro, R
Smestad, L
Sorrentino, F
Testera, G
Tietje, I C
Widmann, E
Yzombard, P
Zimmer, C
Zmeskal, J
Zurlo, N
author_sort Evans, C
collection CERN
description The AEgIS (Antimatter Experiment: Gravity, Interferometry, Spectroscopy) is a CERN based experiment with the central aim to measure directly the gravitational acceleration of antihydrogen. Antihydrogen atoms will be produced via charge exchange reactions which will consist of Rydberg-excited positronium atoms sent to cooled antiprotons within an electromagnetic trap. The resulting Rydberg antihydrogen atoms will then be horizontally accelerated by an electric field gradient (Stark effect), they will then pass through a moiré deflectometer. The vertical deflection caused by the Earth's gravitational field will test for the first time the Weak Equivalence Principle for antimatter. Detection will be undertaken via a position sensitive detector. Around $10^3$ antihydrogen atoms are needed for the gravitational measurement to be completed. The present status, current achievements and results will be presented, with special attention toward the laser excitation of positronium (Ps) to the $n=3$ state and the production of Ps atoms in the transmission geometry.
id oai-inspirehep.net-1707133
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling oai-inspirehep.net-17071332019-09-30T06:29:59Zdoi:10.1051/epjconf/201818202040http://cds.cern.ch/record/2676005engEvans, CAghion, SAmsler, CBonomi, GBrusa, R SCaccia, MCaravita, RCastelli, FCerchiari, GComparat, DConsolati, GDemetrio, ADi Noto, LDoser, MFani, MFerragut, RFesel, JFontana, AGerber, SGiammarchi, MGligorova, AGuatieri, FHaider, SHinterberger, AHolmestad, HKellerbauer, AKhalidova, OKrasnický, DLagomarsino, VLansonneur, PLebrun, PMalbrunot, CMariazzi, SMarton, JMatveev, VMazzotta, ZMüller, S RNebbia, GNedelec, POberthaler, MPacifico, NPagano, DPenasa, LPetracek, VPrelz, FPrevedelli, MRavelli, LRienaecker, BRobert, JRøhne, O MRotondi, ASandaker, HSantoro, RSmestad, LSorrentino, FTestera, GTietje, I CWidmann, EYzombard, PZimmer, CZmeskal, JZurlo, NTowards the first measurement of matter-antimatter gravitational interactionGeneral Relativity and CosmologyThe AEgIS (Antimatter Experiment: Gravity, Interferometry, Spectroscopy) is a CERN based experiment with the central aim to measure directly the gravitational acceleration of antihydrogen. Antihydrogen atoms will be produced via charge exchange reactions which will consist of Rydberg-excited positronium atoms sent to cooled antiprotons within an electromagnetic trap. The resulting Rydberg antihydrogen atoms will then be horizontally accelerated by an electric field gradient (Stark effect), they will then pass through a moiré deflectometer. The vertical deflection caused by the Earth's gravitational field will test for the first time the Weak Equivalence Principle for antimatter. Detection will be undertaken via a position sensitive detector. Around $10^3$ antihydrogen atoms are needed for the gravitational measurement to be completed. The present status, current achievements and results will be presented, with special attention toward the laser excitation of positronium (Ps) to the $n=3$ state and the production of Ps atoms in the transmission geometry.oai:inspirehep.net:17071332018
spellingShingle General Relativity and Cosmology
Evans, C
Aghion, S
Amsler, C
Bonomi, G
Brusa, R S
Caccia, M
Caravita, R
Castelli, F
Cerchiari, G
Comparat, D
Consolati, G
Demetrio, A
Di Noto, L
Doser, M
Fani, M
Ferragut, R
Fesel, J
Fontana, A
Gerber, S
Giammarchi, M
Gligorova, A
Guatieri, F
Haider, S
Hinterberger, A
Holmestad, H
Kellerbauer, A
Khalidova, O
Krasnický, D
Lagomarsino, V
Lansonneur, P
Lebrun, P
Malbrunot, C
Mariazzi, S
Marton, J
Matveev, V
Mazzotta, Z
Müller, S R
Nebbia, G
Nedelec, P
Oberthaler, M
Pacifico, N
Pagano, D
Penasa, L
Petracek, V
Prelz, F
Prevedelli, M
Ravelli, L
Rienaecker, B
Robert, J
Røhne, O M
Rotondi, A
Sandaker, H
Santoro, R
Smestad, L
Sorrentino, F
Testera, G
Tietje, I C
Widmann, E
Yzombard, P
Zimmer, C
Zmeskal, J
Zurlo, N
Towards the first measurement of matter-antimatter gravitational interaction
title Towards the first measurement of matter-antimatter gravitational interaction
title_full Towards the first measurement of matter-antimatter gravitational interaction
title_fullStr Towards the first measurement of matter-antimatter gravitational interaction
title_full_unstemmed Towards the first measurement of matter-antimatter gravitational interaction
title_short Towards the first measurement of matter-antimatter gravitational interaction
title_sort towards the first measurement of matter-antimatter gravitational interaction
topic General Relativity and Cosmology
url https://dx.doi.org/10.1051/epjconf/201818202040
http://cds.cern.ch/record/2676005
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