Swelling of doubly magic $^{48}$Ca core in Ca isotopes beyond $N=28$
Abstract
Interaction cross sections for Ca on a carbon target at 280 MeV/nucleon have been measured for the first time. The neutron number dependence of derived root-mean-square matter radii shows a significant increase beyond the neutron magic number . Furthermore, this enhancement of matter radii is much larger than that of the previously measured charge radii, indicating a novel growth in neutron skin thickness. A simple examination based on the Fermi-type distribution, and the Mean-Field calculations point out that this anomalous enhancement of the nuclear size beyond results from an enlargement of the core by a sudden increase in the surface diffuseness of the neutron density distribution, which implies the swelling of the bare Ca core in Ca isotopes beyond .
Keywords
Cite
@article{arxiv.1911.05262,
title = {Swelling of doubly magic $^{48}$Ca core in Ca isotopes beyond $N=28$},
author = {M. Tanaka and M. Takechi and A. Homma and M. Fukuda and D. Nishimura and T. Suzuki and Y. Tanaka and T. Moriguchi and D. S. Ahn and A. Aimaganbetov and M. Amano and H. Arakawa and S. Bagchi and K. -H. Behr and N. Burtebayev and K. Chikaato and H. Du and S. Ebata and T. Fujii and N. Fukuda and H. Geissel and T. Hori and W. Horiuchi and S. Hoshino and R. Igosawa and A. Ikeda and N. Inabe and K. Inomata and K. Itahashi and T. Izumikawa and D. Kamioka and N. Kanda and I. Kato and I. Kenzhina and Z. Korkulu and Y. Kuk and K. Kusaka and K. Matsuta and M. Mihara and E. Miyata and D. Nagae and S. Nakamura and M. Nassurlla and K. Nishimuro and K. Nishizuka and K. Ohnishi and M. Ohtake and T. Ohtsubo and S. Omika and H. J. Ong and A. Ozawa and A. Prochazka and H. Sakurai and C. Scheidenberger and Y. Shimizu and T. Sugihara and T. Sumikama and H. Suzuki and S. Suzuki and H. Takeda and Y. K. Tanaka and I. Tanihata and T. Wada and K. Wakayama and S. Yagi and T. Yamaguchi and R. Yanagihara and Y. Yanagisawa and K. Yoshida and T. K. Zholdybayev},
journal= {arXiv preprint arXiv:1911.05262},
year = {2020}
}
Comments
6 pages, 3 figures