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3D Simulation studies of mixed plasma confinement at AEgIS

Title: 3D Simulation studies of mixed plasma confinement at AEgIS
Authors: Rawat, Bharat Singh; Kumar, Narender; Rienacker, Benjamin; Welsch, Carsten P.; Alfaro Campos, Sara; Auzins, Marcis; Berghold, Michael; Bergmann, Benedikt; Burian, Petr; Brusa, Roberto Sennen; Camper, Antoine; Caravita, Ruggero; Castelli, Fabrizio; Cerchiari, Giovanni; Ciuryło, Roman; Chehaimi, Ahmad; Consolati, Giovanni; Doser, Michael; Eliaszuk, Kamil; Ferguson, R.; Germann, Matthias; Giszczak, Anna; Glöggler, Lisa Theresa; Graczykowski, Łukasz; Grosbart, Malgorzata; Guatieri, Francesco; Gusakova, Natali; Gustafsson, F. P.; Haider, Stefan; Huck, Saiva; Hugenschmidt, Christoph; Janik, Malgorzata Anna; Januszek, Timoteusz; Kasprowicz, Grzegorz; Kempny, Kamila; Khatri, Gunn; Kłosowski, Łukasz; Kornakov, G.; Krumins, Valts; Lappo, Lidia; Linek, Adam; Mariazzi, Sebastiano; Moskal, P.; Münster, Markus; Pandey, Pushpa; Pecak, Daniel; Penasa, Luca; Petracek, Vojtech; Piwinski, Mariusz; Pospisil, Stanislav; Prelz, Francesco; Rangwala, Sadiq Ali; Rauschendorfer, Tassilo; Rodin, Volodymyr; Røhne, Ole; Sandaker, H.; Sharma, S.; Smolyanskiy, Petr; Sowiński, Theodoros; Tefelski, Dariusz; Volponi, Marco; Zawada, Michal; Zielinski, Jakub; Zurlo, Nicola
Contributors: Rawat, Bharat Singh; Kumar, Narender; Rienacker, Benjamin; Welsch, Carsten P.; Alfaro Campos, Sara; Auzins, Marci; Berghold, Michael; Bergmann, Benedikt; Burian, Petr; Brusa, Roberto Sennen; Camper, Antoine; Caravita, Ruggero; Castelli, Fabrizio; Cerchiari, Giovanni; Ciuryło, Roman; Chehaimi, Ahmad; Consolati, Giovanni; Doser, Michael; Eliaszuk, Kamil; Ferguson, R.; Germann, Matthia; Giszczak, Anna; Glöggler, Lisa Theresa; Graczykowski, Łukasz; Grosbart, Malgorzata; Guatieri, Francesco; Gusakova, Natali; Gustafsson, F. P.; Haider, Stefan; Huck, Saiva; Hugenschmidt, Christoph; Janik, Malgorzata Anna; Januszek, Timoteusz; Kasprowicz, Grzegorz; Kempny, Kamila; Khatri, Gunn; Kłosowski, Łukasz; Kornakov, G.; Krumins, Valt; Lappo, Lidia; Linek, Adam; Mariazzi, Sebastiano; Moskal, P.; Münster, Marku; Pandey, Pushpa; Pecak, Daniel; Penasa, Luca; Petracek, Vojtech; Piwinski, Mariusz; Pospisil, Stanislav; Prelz, Francesco; Rangwala, Sadiq Ali; Rauschendorfer, Tassilo; Rodin, Volodymyr; Røhne, Ole; Sandaker, H.; Sharma, S.; Smolyanskiy, Petr; Sowiński, Theodoro; Tefelski, Dariusz; Volponi, Marco; Zawada, Michal; Zielinski, Jakub; Zurlo, Nicola
Publisher Information: SISSA; Trieste
Publication Year: 2025
Collection: RE.PUBLIC@POLIMI - Research Publications at Politecnico di Milano
Description: The AE(Equation presented)IS (Antimatter Experiment: Gravity, Interferometry and Spectroscopy) project, based at CERN's Antiproton Decelerator (AD) facility seeks to probe the Weak Equivalence Principle (WEP) for antimatter. It has undergone significant enhancements, capitalizing on the increased quantity of colder antiprotons made available by the Extra Low Energy Antiproton Ring (ELENA) decelerator. These improvements aim to create a horizontal pulsed beam of antihydrogen atoms and enable a direct investigation into the impact of gravity. The AE(Equation presented)IS experiment consists of a Penning Malmberg trap comprising cylindrical electrodes within a 5 T and a 1 T axial magnetic field region. The 5 T field captures cold antiprotons, while the 1 T field is used for further trapping which ultimately leads to antihydrogen production. To maximize the antihydrogen formation, it is crucial to have a detailed understanding of the properties of trapped antiprotons, which can be achieved by realistic 3D simulation studies for the dynamics of particle confinement. Previous studies indicated antiprotons exhibit greater stability in a shallower potential well [1]. In this work, we examine the dynamics of antiprotons by varying the outer electrode potentials while maintaining constant potentials at the inner electrodes of the electrostatic trap, utilizing an Electrostatic Particle-In-Cell (ES-PIC) solver in the CST (Computer Simulation Technology) studio. We extended the studies on the temporal evolution of a mixed plasma generated with the introduction of electrons inside the trap along with the antiprotons by observing the effect of their properties: density, and temperature. Additionally, we provide an overview of the results obtained for the energy evolution of antiprotons using a Rotating Wall (RW) electrode at different RW frequencies. Finally, we summarize our plans to develop a full digital twin of the AE(Equation presented)IS experiment for the next two years, providing valuable insights into the parameters ...
Document Type: conference object
Language: English
Relation: ispartofbook:International Conference on Exotic Atoms and Related Topics and Conference on Low Energy Antiprotons (EXA-LEAP2024); International Conference on Exotic Atoms and Related Topics and Conference on Low Energy Antiprotons (EXA-LEAP2024); volume:480; firstpage:1; lastpage:7; numberofpages:7; journal:POS PROCEEDINGS OF SCIENCE; https://hdl.handle.net/11311/1301053
DOI: 10.22323/1.480.0076
Availability: https://hdl.handle.net/11311/1301053; https://doi.org/10.22323/1.480.0076
Rights: info:eu-repo/semantics/openAccess
Accession Number: edsbas.479CFE25
Database: BASE