Direct mapping of nuclear shell effects in the heaviest elements
Nuclear Experiment
2014-06-26 v1
Abstract
Quantum-mechanical shell effects are expected to strongly enhance nuclear binding on an "island of stability" of superheavy elements. The predicted center at proton number , or and neutron number has been substantiated by the recent synthesis of new elements up to . However the location of the center and the extension of the island of stability remain vague. High-precision mass spectrometry allows the direct measurement of nuclear binding energies and thus the determination of the strength of shell effects. Here, we present such measurements for nobelium and lawrencium isotopes, which also pin down the deformed shell gap at .
Cite
@article{arxiv.1406.6477,
title = {Direct mapping of nuclear shell effects in the heaviest elements},
author = {E. Minaya Ramirez and D. Ackermann and K. Blaum and M. Block and C. Droese and Ch. E. Düllmann and M. Dworschak and M. Eibach and S. Eliseev and E. Haettner and F. Herfurth and F. P. Heßberger and S. Hofmann and J. Ketelaer and G. Marx and M. Mazzocco and D. Nesterenko and Yu. N. Novikov and W. R. Plaß and D. Rodríguez and C. Scheidenberger and L. Schweikhard and P. G. Thirolf and C. Weber},
journal= {arXiv preprint arXiv:1406.6477},
year = {2014}
}
Comments
9 pages, 3 figures