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Nuclear Charge Radii of the Nickel Isotopes 58−68,70Ni

Title: Nuclear Charge Radii of the Nickel Isotopes 58−68,70Ni
Authors: Malbrunot-Ettenauer, S.; Kaufmann, S.; Bacca, S.; Barbieri, C.; Billowes, J.; Bissell, M. L.; Blaum, K.; Cheal, B.; Duguet, T.; Garcia Ruiz, R. F.; Gins, W.; Gorges, C.; Hagen, G.; Heylen, H.; Holt, J. D.; Jansen, G. R.; Kanellakopoulos, A.; Kortelainen, M.; Miyagi, T.; Navrátil, P.; Nazarewicz, W.; Neugart, R.; Neyens, G.; Nörtershäuser, W.; Novario, S. J.; Papenbrock, T.; Ratajczyk, T.; Reinhard, P.-G.; Rodríguez, L. V.; Sánchez, R.; Sailer, S.; Schwenk, A.; Simonis, J.; Somà, V.; Stroberg, S. R.; Wehner, L.; Wraith, C.; Xie, L.; Xu, Z. Y.; Yang, X. F.; Yordanov, D. T.
Publisher Information: American Physical Society (APS)
Publication Year: 2022
Collection: JYX - Jyväskylä University Digital Archive / Jyväskylän yliopiston julkaisuarkisto
Subject Terms: isotoopit; ydinfysiikka; tiheysfunktionaaliteoria; nikkeli
Description: Collinear laser spectroscopy is performed on the nickel isotopes 58−68,70Ni, using a time-resolved photon counting system. From the measured isotope shifts, nuclear charge radii Rc are extracted and compared to theoretical results. Three ab initio approaches all employ, among others, the chiral interaction NNLOsat, which allows an assessment of their accuracy. We find agreement with experiment in differential radii δ⟨r2c⟩ for all employed ab initio methods and interactions, while the absolute radii are consistent with data only for NNLOsat. Within nuclear density functional theory, the Skyrme functional SV-min matches experiment more closely than the Fayans functional Fy(Δr,HFB). ; peerReviewed
Document Type: article in journal/newspaper
File Description: application/pdf; fulltext
Language: English
ISSN: 0031-9007
Relation: Physical Review Letters; 128
Availability: http://urn.fi/URN:NBN:fi:jyu-202202181561
Rights: CC BY 4.0 ; © Authors, 2022 ; openAccess ; https://creativecommons.org/licenses/by/4.0/
Accession Number: edsbas.CAD01FE5
Database: BASE