Literature DB >> 22861844

New precision mass measurements of neutron-rich calcium and potassium isotopes and three-nucleon forces.

A T Gallant1, J C Bale, T Brunner, U Chowdhury, S Ettenauer, A Lennarz, D Robertson, V V Simon, A Chaudhuri, J D Holt, A A Kwiatkowski, E Mané, J Menéndez, B E Schultz, M C Simon, C Andreoiu, P Delheij, M R Pearson, H Savajols, A Schwenk, J Dilling.   

Abstract

We present precision Penning trap mass measurements of neutron-rich calcium and potassium isotopes in the vicinity of neutron number N=32. Using the TITAN system, the mass of 51K was measured for the first time, and the precision of the (51,52)Ca mass values were improved significantly. The new mass values show a dramatic increase of the binding energy compared to those reported in the atomic mass evaluation. In particular, 52Ca is more bound by 1.74 MeV, and the behavior with neutron number deviates substantially from the tabulated values. An increased binding was predicted recently based on calculations that include three-nucleon (3N) forces. We present a comparison to improved calculations, which agree remarkably with the evolution of masses with neutron number, making neutron-rich calcium isotopes an exciting region to probe 3N forces.

Entities:  

Year:  2012        PMID: 22861844     DOI: 10.1103/PhysRevLett.109.032506

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  1 in total

1.  Masses of exotic calcium isotopes pin down nuclear forces.

Authors:  F Wienholtz; D Beck; K Blaum; Ch Borgmann; M Breitenfeldt; R B Cakirli; S George; F Herfurth; J D Holt; M Kowalska; S Kreim; D Lunney; V Manea; J Menéndez; D Neidherr; M Rosenbusch; L Schweikhard; A Schwenk; J Simonis; J Stanja; R N Wolf; K Zuber
Journal:  Nature       Date:  2013-06-20       Impact factor: 49.962

  1 in total

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