The effect of the tensor force on the predicted stability of superheavy nuclei

Full text not archived in this repository.

Please see our End User Agreement.

It is advisable to refer to the publisher's version if you intend to cite from this work. See Guidance on citing.

Add to AnyAdd to TwitterAdd to FacebookAdd to LinkedinAdd to PinterestAdd to Email

Suckling, E. B. and Stevenson, P. D. (2010) The effect of the tensor force on the predicted stability of superheavy nuclei. EPL (Europhysics Letters), 90 (1). 12001. ISSN 1286-4854 doi: 10.1209/0295-5075/90/12001

Abstract/Summary

The effect of the tensor component of the Skyrme effective nucleon-nucleon interaction on the single-particle structure in superheavy elements is studied. A selection of the available Skyrme forces has been chosen and their predictions for the proton and neutron shell closures investigated. The inclusion of the tensor term with realistic coupling strength parameters leads to a small increase in the spin-orbit splitting between the proton 2f7/2 and 2f5/2 partners, opening the Z=114 shell gap over a wide range of nuclei. The Z=126 shell gap, predicted by these models in the absence of the tensor term, is found to be stongly dependent on neutron number with a Z=138 gap opening for large neutron numbers, having a consequent implication for the synthesis of neutron-rich superheavy elements. The predicted neutron shell structures remain largely unchanged by inclusion of the tensor component.

Altmetric Badge

Item Type Article
URI https://reading-clone.eprints-hosting.org/id/eprint/39230
Identification Number/DOI 10.1209/0295-5075/90/12001
Refereed Yes
Divisions No Reading authors. Back catalogue items
Publisher IOP
Download/View statistics View download statistics for this item

University Staff: Request a correction | Centaur Editors: Update this record

Search Google Scholar