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β-Delayed One and Two Neutron Emission Probabilities Southeast of ^{132}Sn and the Odd-Even Systematics in r-Process Nuclide Abundances.

Authors :
Phong VH
Nishimura S
Lorusso G
Davinson T
Estrade A
Hall O
Kawano T
Liu J
Montes F
Nishimura N
Grzywacz R
Rykaczewski KP
Agramunt J
Ahn DS
Algora A
Allmond JM
Baba H
Bae S
Brewer NT
Bruno CG
Caballero-Folch R
Calviño F
Coleman-Smith PJ
Cortes G
Dillmann I
Domingo-Pardo C
Fijalkowska A
Fukuda N
Go S
Griffin CJ
Ha J
Harkness-Brennan LJ
Isobe T
Kahl D
Khiem LH
Kiss GG
Korgul A
Kubono S
Labiche M
Lazarus I
Liang J
Liu Z
Matsui K
Miernik K
Moon B
Morales AI
Morrall P
Nepal N
Page RD
Piersa-Siłkowska M
Pucknell VFE
Rasco BC
Rubio B
Sakurai H
Shimizu Y
Stracener DW
Sumikama T
Suzuki H
Tain JL
Takeda H
Tarifeño-Saldivia A
Tolosa-Delgado A
Wolińska-Cichocka M
Woods PJ
Yokoyama R
Source :
Physical review letters [Phys Rev Lett] 2022 Oct 21; Vol. 129 (17), pp. 172701.
Publication Year :
2022

Abstract

The β-delayed one- and two-neutron emission probabilities (P_{1n} and P_{2n}) of 20 neutron-rich nuclei with N≥82 have been measured at the RIBF facility of the RIKEN Nishina Center. P_{1n} of ^{130,131}Ag, ^{133,134}Cd, ^{135,136}In, and ^{138,139}Sn were determined for the first time, and stringent upper limits were placed on P_{2n} for nearly all cases. β-delayed two-neutron emission (β2n) was unambiguously identified in ^{133}Cd and ^{135,136}In, and their P_{2n} were measured. Weak β2n was also detected from ^{137,138}Sn. Our results highlight the effect of the N=82 and Z=50 shell closures on β-delayed neutron emission probability and provide stringent benchmarks for newly developed macroscopic-microscopic and self-consistent global models with the inclusion of a statistical treatment of neutron and γ emission. The impact of our measurements on r-process nucleosynthesis was studied in a neutron star merger scenario. Our P_{1n} and P_{2n} have a direct impact on the odd-even staggering of the final abundance, improving the agreement between calculated and observed Solar System abundances. The odd isotope fraction of Ba in r-process-enhanced (r-II) stars is also better reproduced using our new data.

Details

Language :
English
ISSN :
1079-7114
Volume :
129
Issue :
17
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
36332266
Full Text :
https://doi.org/10.1103/PhysRevLett.129.172701