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BASE-STEP: A transportable antiproton reservoir for fundamental interaction studies

Currently, the only worldwide source of low-energy antiprotons is the AD/ELENA facility located at CERN. To date, all precision measurements on single antiprotons have been conducted at this facility and provide stringent tests of the fundamental interactions and their symmetries. However, the magne...

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Autores principales: Smorra, C., Abbass, F., Bohman, M., Dutheil, Y., Hobl, A., Popper, D., Arndt, B., Bauer, B.B., Devlin, J.A., Erlewein, S., Fleck, M., Jäger, J.I., Latacz, B.M., Micke, P., Schiffelholz, M., Umbrazunas, G., Wiesinger, M., Will, C., Wursten, E., Yildiz, H., Blaum, K., Matsuda, Y., Mooser, A., Ospelkaus, C., Quint, W., Soter, A., Walz, J., Yamazaki, Y., Ulmer, S.
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:http://cds.cern.ch/record/2859638
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author Smorra, C.
Abbass, F.
Bohman, M.
Dutheil, Y.
Hobl, A.
Popper, D.
Arndt, B.
Bauer, B.B.
Devlin, J.A.
Erlewein, S.
Fleck, M.
Jäger, J.I.
Latacz, B.M.
Micke, P.
Schiffelholz, M.
Umbrazunas, G.
Wiesinger, M.
Will, C.
Wursten, E.
Yildiz, H.
Blaum, K.
Matsuda, Y.
Mooser, A.
Ospelkaus, C.
Quint, W.
Soter, A.
Walz, J.
Yamazaki, Y.
Ulmer, S.
author_facet Smorra, C.
Abbass, F.
Bohman, M.
Dutheil, Y.
Hobl, A.
Popper, D.
Arndt, B.
Bauer, B.B.
Devlin, J.A.
Erlewein, S.
Fleck, M.
Jäger, J.I.
Latacz, B.M.
Micke, P.
Schiffelholz, M.
Umbrazunas, G.
Wiesinger, M.
Will, C.
Wursten, E.
Yildiz, H.
Blaum, K.
Matsuda, Y.
Mooser, A.
Ospelkaus, C.
Quint, W.
Soter, A.
Walz, J.
Yamazaki, Y.
Ulmer, S.
author_sort Smorra, C.
collection CERN
description Currently, the only worldwide source of low-energy antiprotons is the AD/ELENA facility located at CERN. To date, all precision measurements on single antiprotons have been conducted at this facility and provide stringent tests of the fundamental interactions and their symmetries. However, the magnetic field fluctuations from the facility operation limit the precision of upcoming measurements. To overcome this limitation, we have designed the transportable antiproton trap system BASE-STEP to relocate antiprotons to laboratories with a calm magnetic environment. We anticipate that the transportable antiproton trap will facilitate enhanced tests of CPT invariance with antiprotons, and provide new experimental possibilities of using transported antiprotons and other accelerator-produced exotic ions. We present here the technical design of the transportable trap system. This includes the transportable superconducting magnet, the cryogenic inlay consisting of the trap stack and the detection systems, and the differential pumping section to suppress the residual gas flow into the cryogenic trap chamber.
id cern-2859638
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28596382023-06-05T12:22:04Zhttp://cds.cern.ch/record/2859638engSmorra, C.Abbass, F.Bohman, M.Dutheil, Y.Hobl, A.Popper, D.Arndt, B.Bauer, B.B.Devlin, J.A.Erlewein, S.Fleck, M.Jäger, J.I.Latacz, B.M.Micke, P.Schiffelholz, M.Umbrazunas, G.Wiesinger, M.Will, C.Wursten, E.Yildiz, H.Blaum, K.Matsuda, Y.Mooser, A.Ospelkaus, C.Quint, W.Soter, A.Walz, J.Yamazaki, Y.Ulmer, S.BASE-STEP: A transportable antiproton reservoir for fundamental interaction studiesphysics.atom-phOther Fields of Physicsphysics.ins-detDetectors and Experimental TechniquesCurrently, the only worldwide source of low-energy antiprotons is the AD/ELENA facility located at CERN. To date, all precision measurements on single antiprotons have been conducted at this facility and provide stringent tests of the fundamental interactions and their symmetries. However, the magnetic field fluctuations from the facility operation limit the precision of upcoming measurements. To overcome this limitation, we have designed the transportable antiproton trap system BASE-STEP to relocate antiprotons to laboratories with a calm magnetic environment. We anticipate that the transportable antiproton trap will facilitate enhanced tests of CPT invariance with antiprotons, and provide new experimental possibilities of using transported antiprotons and other accelerator-produced exotic ions. We present here the technical design of the transportable trap system. This includes the transportable superconducting magnet, the cryogenic inlay consisting of the trap stack and the detection systems, and the differential pumping section to suppress the residual gas flow into the cryogenic trap chamber.arXiv:2304.09555oai:cds.cern.ch:28596382023-04-19
spellingShingle physics.atom-ph
Other Fields of Physics
physics.ins-det
Detectors and Experimental Techniques
Smorra, C.
Abbass, F.
Bohman, M.
Dutheil, Y.
Hobl, A.
Popper, D.
Arndt, B.
Bauer, B.B.
Devlin, J.A.
Erlewein, S.
Fleck, M.
Jäger, J.I.
Latacz, B.M.
Micke, P.
Schiffelholz, M.
Umbrazunas, G.
Wiesinger, M.
Will, C.
Wursten, E.
Yildiz, H.
Blaum, K.
Matsuda, Y.
Mooser, A.
Ospelkaus, C.
Quint, W.
Soter, A.
Walz, J.
Yamazaki, Y.
Ulmer, S.
BASE-STEP: A transportable antiproton reservoir for fundamental interaction studies
title BASE-STEP: A transportable antiproton reservoir for fundamental interaction studies
title_full BASE-STEP: A transportable antiproton reservoir for fundamental interaction studies
title_fullStr BASE-STEP: A transportable antiproton reservoir for fundamental interaction studies
title_full_unstemmed BASE-STEP: A transportable antiproton reservoir for fundamental interaction studies
title_short BASE-STEP: A transportable antiproton reservoir for fundamental interaction studies
title_sort base-step: a transportable antiproton reservoir for fundamental interaction studies
topic physics.atom-ph
Other Fields of Physics
physics.ins-det
Detectors and Experimental Techniques
url http://cds.cern.ch/record/2859638
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