Recent developments for high-precision mass measurements of the heaviest elements at SHIPTRAP

Atomic nuclei far from stability continue to challenge our understanding. For example, theoretical models have predicted an “island of stability” in the region of the superheavy elements due to the closure of spherical proton and neutron shells. Depending on the model, these are expected at Z=114, 1...

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Main Authors: Minaya Ramirez, E. (Author) , Ackermann, D. (Author) , Blaum, Klaus (Author) , Block, M. (Author) , Droese, C. (Author) , Düllmann, Ch. E. (Author) , Eibach, Martin Andreas (Author) , Eliseev, S. (Author) , Haettner, E. (Author) , Herfurth, F. (Author) , Heßberger, F. P. (Author) , Hofmann, S. (Author) , Marx, G. (Author) , Nesterenko, D. (Author) , Novikov, Yu. N. (Author) , Plaß, W. R. (Author) , Rodríguez, D. (Author) , Scheidenberger, C. (Author) , Schweikhard, L. (Author) , Thirolf, P. G. (Author) , Weber, C. (Author)
Format: Article (Journal)
Language:English
Published: 23 August 2013
In: Nuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms
Year: 2013, Volume: 317, Pages: 501-505
ISSN:1872-9584
DOI:10.1016/j.nimb.2013.07.055
Online Access:Verlag, lizenzpflichtig, Volltext: https://doi.org/10.1016/j.nimb.2013.07.055
Verlag, lizenzpflichtig, Volltext: https://www.sciencedirect.com/science/article/pii/S0168583X13008732
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Author Notes:E. Minaya Ramirez, D. Ackermann, K. Blaum, M. Block, C. Droese, Ch.E. Düllmann, M. Eibach, S. Eliseev, E. Haettner, F. Herfurth, F.P. Heßberger, S. Hofmann, G. Marx, D. Nesterenko, Yu.N. Novikov, W.R. Plaß, D. Rodríguez, C. Scheidenberger, L. Schweikhard, P.G. Thirolf, C. Weber

MARC

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520 |a Atomic nuclei far from stability continue to challenge our understanding. For example, theoretical models have predicted an “island of stability” in the region of the superheavy elements due to the closure of spherical proton and neutron shells. Depending on the model, these are expected at Z=114, 120 or even 126 and N=172 or 184. Valuable information on the road to the island of stability is derived from high-precision mass measurements, which give direct access to binding energies of short-lived trans-uranium nuclei. Recently, direct mass measurements at SHIPTRAP have been extended to nobelium and lawrencium isotopes around the deformed shell gap N=152. In order to further extend mass measurements to the region of superheavy elements, new technical developments are required to increase the performance of our setup. The sensitivity will increase through the implementation of a new detection method, where observation of one single ion is sufficient. Together with the use of a more efficient gas stopping cell, this will us allow to significantly enhance the overall efficiency of SHIPTRAP. 
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