Antiprotonic Atoms as Gateways to HCI

The present study investigates the production of highly charged ions (HCIs) through the novel application of antiprotonic atoms and explores their potential for studying atomic and nuclear structures. Utilizing the Geant4 simulation toolkit, comprehensive simulations were conducted for all known iso...

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Vydáno v:Atoms Ročník 13; číslo 11; s. 93
Hlavní autoři: Lappo, Lidia, Zieliński, Jakub, Gustafsson, Fredrik P., Grosbart, Malgorzata, Kornakov, Georgy, Doser, Michael
Médium: Journal Article
Jazyk:angličtina
Vydáno: Basel MDPI AG 01.11.2025
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ISSN:2218-2004, 2218-2004
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Abstract The present study investigates the production of highly charged ions (HCIs) through the novel application of antiprotonic atoms and explores their potential for studying atomic and nuclear structures. Utilizing the Geant4 simulation toolkit, comprehensive simulations were conducted for all known isotopes with atomic numbers below 100. These simulations recorded key parameters of the resulting nuclear fragments, including mass, momentum, charge, and yield. The results obtained from this study offer valuable insights into the mechanisms of HCI production and provide a foundation for planning and analyzing future experimental investigations. This work demonstrates the feasibility of using antiprotonic atoms to advance nuclear and atomic physics research.
AbstractList The present study investigates the production of highly charged ions (HCIs) through the novel application of antiprotonic atoms and explores their potential for studying atomic and nuclear structures. Utilizing the Geant4 simulation toolkit, comprehensive simulations were conducted for all known isotopes with atomic numbers below 100. These simulations recorded key parameters of the resulting nuclear fragments, including mass, momentum, charge, and yield. The results obtained from this study offer valuable insights into the mechanisms of HCI production and provide a foundation for planning and analyzing future experimental investigations. This work demonstrates the feasibility of using antiprotonic atoms to advance nuclear and atomic physics research.
Audience Academic
Author Doser, Michael
Gustafsson, Fredrik P.
Zieliński, Jakub
Grosbart, Malgorzata
Lappo, Lidia
Kornakov, Georgy
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10.1016/j.ppnp.2022.103964
10.1103/PhysRevA.100.063418
10.1080/00107518908221991
10.1038/nature24048
10.1140/epjd/e2008-00025-3
10.1103/PhysRevC.107.034314
ContentType Journal Article
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SubjectTerms antiprotomic atoms
Atomic physics
Atoms & subatomic particles
Geant4
HCI production
Isotopes
Simulation
simulations
Spectrum analysis
X-rays
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