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Swelling of Doubly Magic Ca48 Core in Ca Isotopes beyond N=28

Authors :
K. Itahashi
M. Amano
H. Du
S. Nakamura
Isao Tanihata
R. Igosawa
K. Ohnishi
Mototsugu Mihara
Mitsunori Fukuda
Z. Korkulu
I. Kato
Naohito Inabe
H. Takeda
N. Burtebayev
Maulen Nassurlla
R. Yanagihara
Kensaku Matsuta
N. Kanda
Hiroyoshi Sakurai
I. Kenzhina
Y. Shimizu
Masao Ohtake
T. Sugihara
K. Inomata
Maya Takechi
T. Hori
H. Suzuki
K. Yoshida
T. Wada
T. K. Zholdybayev
E. Miyata
S. Yagi
Toshio Suzuki
Momoko Tanaka
S. Hoshino
Y. Kuk
S. Ebata
K. Wakayama
H. Arakawa
A. Ikeda
Kensuke Kusaka
A. Ozawa
S. Suzuki
N. Fukuda
K. Nishizuka
Hooi Jin Ong
A. Prochazka
D. Nagae
S. Bagchi
Y. Yanagisawa
S. Omika
K. H. Behr
Y. K. Tanaka
A. S. Aimaganbetov
Yukichi Tanaka
Takuji Izumikawa
C. Scheidenberger
A. Homma
Takashi Ohtsubo
Tetsuaki Moriguchi
D. Nishimura
Daiki Kamioka
T. Fujii
K. Chikaato
K. Nishimuro
Takayuki Yamaguchi
Wataru Horiuchi
D. S. Ahn
Hans Geissel
Toshiyuki Sumikama
Source :
Physical Review Letters. 124
Publication Year :
2020
Publisher :
American Physical Society (APS), 2020.

Abstract

Interaction cross sections for ^{42-51}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 N=28. 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 mean field calculations point out that this anomalous enhancement of the nuclear size beyond N=28 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 ^{48}Ca core in Ca isotopes beyond N=28.

Details

ISSN :
10797114 and 00319007
Volume :
124
Database :
OpenAIRE
Journal :
Physical Review Letters
Accession number :
edsair.doi...........67885ba28722e43981fa0b41ab05fd7d
Full Text :
https://doi.org/10.1103/physrevlett.124.102501