Spectroscopy of K 52
M Enciu
1
,
A. OBERTELLI
1, 2, 3, 4
,
P. Doornenbal
4
,
M. Heinz
1, 5, 6, 7
,
T Miyagi
1, 5, 6, 7, 8
,
F. NOWACKI
9
,
K. OGATA
10, 11
,
A. Poves
12, 13
,
A. Schwenk
1, 5, 6, 7
,
Kazuki Yoshida
14
,
Lynda Achouri
15
,
HA Baba
4
,
F. Browne
4
,
D Calvet
2, 3
,
F. Château
2, 3
,
S. Chen
4, 16, 17
,
N. Chiga
4
,
A. Corsi
2, 3
,
M. L. Cortes
4
,
A. Delbart
2, 3
,
J.-M. Gheller
2, 3
,
A. Giganon
2, 3
,
A. GILLIBERT
2, 3
,
C. Hilaire
2, 3
,
T. Isobe
4
,
T. KOBAYASHI
18
,
Y. Kubota
4, 19
,
V. Lapoux
2, 3
,
H N Liu
1, 2, 3, 20
,
T. Motobayashi
4
,
I. Murray
3, 4
,
H. Otsu
4
,
V. Panin
4
,
Nancy Paul
2, 3, 21
,
W. Rodriguez
4, 22, 23
,
H. Sakurai
4, 19
,
M. Sasano
4
,
D. Steppenbeck
4
,
L Stuhl
19, 24, 25
,
Y. L. Sun
1, 2, 3
,
Y. TOGANO
4, 26
,
T. Uesaka
4
,
K. Wimmer
4, 19
,
K. Yoneda
4
,
Özge Aktas
20
,
T. Aumann
1, 6
,
L.X. Chung
27, 28
,
F Flavigny
3, 15
,
S. Franchoo
3
,
I. Gašparić
1, 4, 29
,
R.-B. Gerst
30
,
J. Gibelin
15
,
K. I. Hahn
25, 31
,
D. Kim
4, 25, 31
,
Y. Kondo
32
,
P. Koseoglou
1, 6
,
J. Lee
16
,
C. Lehr
1
,
P J Li
16
,
B D Linh
27, 28
,
T. Lokotko
16
,
M. MacCormick
3
,
K. Moschner
30
,
Takashi Nakamura
32
,
S.Y. Park
25, 31
,
D. Rossi
1
,
E. Sahin
33
,
P.-A. Söderström
1
,
D. Sohler
24
,
S Takeuchi
32
,
H. Toernqvist
1, 6
,
V. Vaquero
34
,
V. Wagner
1
,
S Wang
35
,
Viktor Werner
1
,
X Xu
16
,
H. YAMADA
32
,
D. Yan
35
,
Z. Yang
4
,
M. Yasuda
32
,
L. Zanetti
1
2
CEA
4
RIKEN Nishina Center
5
ExtreMe Matter Institute EMMI
15
Normandie Univ
21
Laboratoire Kastler Brossel
24
HUN-REN Institute for Nuclear Research
27
Institute for Nuclear Science, and Technology
Publication type: Journal Article
Publication date: 2024-12-02
scimago Q1
wos Q2
SJR: 1.096
CiteScore: 5.9
Impact factor: 3.4
ISSN: 24699985, 24699993, 05562813, 1089490X
Abstract
The first spectroscopy of $^{52}\mathrm{K}$ was investigated via in-beam $\ensuremath{\gamma}$-ray spectroscopy at the RIKEN Radioactive Isotope Beam Factory after one-proton and one-neutron knockout from $^{53}\mathrm{Ca}$ and $^{53}\mathrm{K}$ beams impinging on a 15-cm liquid hydrogen target at $\ensuremath{\approx}230$ MeV/nucleon. The energy level scheme of $^{52}\mathrm{K}$ was built using single $\ensuremath{\gamma}$ and $\ensuremath{\gamma}\text{\ensuremath{-}}\ensuremath{\gamma}$ coincidence spectra. The spins and parities of the excited states were established based on momentum distributions of the fragment after the knockout reaction and based on exclusive cross sections. The results were compared to state-of-the-art shell model calculations with the SDPF-Umod interaction and ab initio in-medium similarity renormalization group calculations with chiral effective field theory nucleon-nucleon and three-nucleon forces.
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@article{2024_Enciu,
author = {M Enciu and A. OBERTELLI and P. Doornenbal and M. Heinz and T Miyagi and F. NOWACKI and K. OGATA and A. Poves and A. Schwenk and Kazuki Yoshida and Lynda Achouri and HA Baba and F. Browne and D Calvet and F. Château and S. Chen and N. Chiga and A. Corsi and M. L. Cortes and A. Delbart and J.-M. Gheller and A. Giganon and A. GILLIBERT and C. Hilaire and T. Isobe and T. KOBAYASHI and Y. Kubota and V. Lapoux and H N Liu and T. Motobayashi and I. Murray and H. Otsu and V. Panin and Nancy Paul and W. Rodriguez and H. Sakurai and M. Sasano and D. Steppenbeck and L Stuhl and Y. L. Sun and Y. TOGANO and T. Uesaka and K. Wimmer and K. Yoneda and Özge Aktas and T. Aumann and L.X. Chung and F Flavigny and S. Franchoo and I. Gašparić and others},
title = {Spectroscopy of K52},
journal = {Physical Review C},
year = {2024},
volume = {110},
publisher = {American Physical Society (APS)},
month = {dec},
url = {https://link.aps.org/doi/10.1103/PhysRevC.110.064301},
number = {6},
pages = {064301},
doi = {10.1103/physrevc.110.064301}
}