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Control system for ion Penning traps at the AEgIS experiment at CERN

The AEgIS experiment located at the Antiproton Decelerator at CERN aims to measure the gravitational fall of a cold antihydrogen pulsed beam. The precise observation of the antiatoms in the Earth gravitational field requires a controlled production and manipulation of antihydrogen. The neutral antim...

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Detalles Bibliográficos
Autores principales: Nowicka, D, Bergmann, B, Bonomi, G, Brusa, R S, Burian, P, Camper, A, Caravita, R, Castelli, F, Cheinet, P, Comparat, D, Consolati, G, Doser, M, Gjersdal, H, Glöggler, L, Graczykowski, Ł, Guatieri, F, Haider, S, Huck, S, Janik, M, Kasprowicz, G, Khatri, G, Kornakov, G, Malbrunot, C, Mariazzi, S, Nebbia, G, Nowak, L, Oswald, E, Pagano, D, Penasa, L, Pospisil, S, Povolo, L, Prelz, F, Rienäcker, B, Røhne, O M, Sandaker, H, Stekl, I, Tefelski, D, Volponi, M, Wolz, T, Zimmer, C, Zurlo, N
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1742-6596/2374/1/012038
http://cds.cern.ch/record/2861338
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author Nowicka, D
Bergmann, B
Bonomi, G
Brusa, R S
Burian, P
Camper, A
Caravita, R
Castelli, F
Cheinet, P
Comparat, D
Consolati, G
Doser, M
Gjersdal, H
Glöggler, L
Graczykowski, Ł
Guatieri, F
Haider, S
Huck, S
Janik, M
Kasprowicz, G
Khatri, G
Kornakov, G
Malbrunot, C
Mariazzi, S
Nebbia, G
Nowak, L
Oswald, E
Pagano, D
Penasa, L
Pospisil, S
Povolo, L
Prelz, F
Rienäcker, B
Røhne, O M
Sandaker, H
Stekl, I
Tefelski, D
Volponi, M
Wolz, T
Zimmer, C
Zurlo, N
author_facet Nowicka, D
Bergmann, B
Bonomi, G
Brusa, R S
Burian, P
Camper, A
Caravita, R
Castelli, F
Cheinet, P
Comparat, D
Consolati, G
Doser, M
Gjersdal, H
Glöggler, L
Graczykowski, Ł
Guatieri, F
Haider, S
Huck, S
Janik, M
Kasprowicz, G
Khatri, G
Kornakov, G
Malbrunot, C
Mariazzi, S
Nebbia, G
Nowak, L
Oswald, E
Pagano, D
Penasa, L
Pospisil, S
Povolo, L
Prelz, F
Rienäcker, B
Røhne, O M
Sandaker, H
Stekl, I
Tefelski, D
Volponi, M
Wolz, T
Zimmer, C
Zurlo, N
author_sort Nowicka, D
collection CERN
description The AEgIS experiment located at the Antiproton Decelerator at CERN aims to measure the gravitational fall of a cold antihydrogen pulsed beam. The precise observation of the antiatoms in the Earth gravitational field requires a controlled production and manipulation of antihydrogen. The neutral antimatter is obtained via a charge exchange reaction between a cold plasma of antiprotons from ELENA decelerator and a pulse of Rydberg positronium atoms. The current custom electronics designed to operate the 5 and 1 T Penning traps are going to be replaced by a control system based on the ARTIQ & Sinara open hardware and software ecosystem. This solution is present in many atomic, molecular and optical physics experiments and devices such as quantum computers. We report the status of the implementation as well as the main features of the new control system.
id cern-2861338
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28613382023-06-09T20:08:11Zdoi:10.1088/1742-6596/2374/1/012038http://cds.cern.ch/record/2861338engNowicka, DBergmann, BBonomi, GBrusa, R SBurian, PCamper, ACaravita, RCastelli, FCheinet, PComparat, DConsolati, GDoser, MGjersdal, HGlöggler, LGraczykowski, ŁGuatieri, FHaider, SHuck, SJanik, MKasprowicz, GKhatri, GKornakov, GMalbrunot, CMariazzi, SNebbia, GNowak, LOswald, EPagano, DPenasa, LPospisil, SPovolo, LPrelz, FRienäcker, BRøhne, O MSandaker, HStekl, ITefelski, DVolponi, MWolz, TZimmer, CZurlo, NControl system for ion Penning traps at the AEgIS experiment at CERNDetectors and Experimental TechniquesQuantum TechnologyThe AEgIS experiment located at the Antiproton Decelerator at CERN aims to measure the gravitational fall of a cold antihydrogen pulsed beam. The precise observation of the antiatoms in the Earth gravitational field requires a controlled production and manipulation of antihydrogen. The neutral antimatter is obtained via a charge exchange reaction between a cold plasma of antiprotons from ELENA decelerator and a pulse of Rydberg positronium atoms. The current custom electronics designed to operate the 5 and 1 T Penning traps are going to be replaced by a control system based on the ARTIQ & Sinara open hardware and software ecosystem. This solution is present in many atomic, molecular and optical physics experiments and devices such as quantum computers. We report the status of the implementation as well as the main features of the new control system.oai:cds.cern.ch:28613382022
spellingShingle Detectors and Experimental Techniques
Quantum Technology
Nowicka, D
Bergmann, B
Bonomi, G
Brusa, R S
Burian, P
Camper, A
Caravita, R
Castelli, F
Cheinet, P
Comparat, D
Consolati, G
Doser, M
Gjersdal, H
Glöggler, L
Graczykowski, Ł
Guatieri, F
Haider, S
Huck, S
Janik, M
Kasprowicz, G
Khatri, G
Kornakov, G
Malbrunot, C
Mariazzi, S
Nebbia, G
Nowak, L
Oswald, E
Pagano, D
Penasa, L
Pospisil, S
Povolo, L
Prelz, F
Rienäcker, B
Røhne, O M
Sandaker, H
Stekl, I
Tefelski, D
Volponi, M
Wolz, T
Zimmer, C
Zurlo, N
Control system for ion Penning traps at the AEgIS experiment at CERN
title Control system for ion Penning traps at the AEgIS experiment at CERN
title_full Control system for ion Penning traps at the AEgIS experiment at CERN
title_fullStr Control system for ion Penning traps at the AEgIS experiment at CERN
title_full_unstemmed Control system for ion Penning traps at the AEgIS experiment at CERN
title_short Control system for ion Penning traps at the AEgIS experiment at CERN
title_sort control system for ion penning traps at the aegis experiment at cern
topic Detectors and Experimental Techniques
Quantum Technology
url https://dx.doi.org/10.1088/1742-6596/2374/1/012038
http://cds.cern.ch/record/2861338
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