Back to Search Start Over

Direct Measurement of the Astrophysical ^{19}F(p,αγ)^{16}O Reaction in the Deepest Operational Underground Laboratory.

Authors :
Zhang LY
Su J
He JJ
Wiescher M
deBoer RJ
Kahl D
Chen YJ
Li XY
Wang JG
Zhang L
Cao FQ
Zhang H
Zhang ZC
Jiao TY
Sheng YD
Wang LH
Song LY
Jiang XZ
Li ZM
Li ET
Wang S
Lian G
Li ZH
Tang XD
Zhao HW
Sun LT
Wu Q
Li JQ
Cui BQ
Chen LH
Ma RG
Guo B
Xu SW
Li JY
Qi NC
Sun WL
Guo XY
Zhang P
Chen YH
Zhou Y
Zhou JF
He JR
Shang CS
Li MC
Zhou XH
Zhang YH
Zhang FS
Hu ZG
Xu HS
Chen JP
Liu WP
Source :
Physical review letters [Phys Rev Lett] 2021 Oct 08; Vol. 127 (15), pp. 152702.
Publication Year :
2021

Abstract

Fluorine is one of the most interesting elements in nuclear astrophysics, where the ^{19}F(p,α)^{16}O reaction is of crucial importance for Galactic ^{19}F abundances and CNO cycle loss in first generation Population III stars. As a day-one campaign at the Jinping Underground Nuclear Astrophysics experimental facility, we report direct measurements of the essential ^{19}F(p,αγ)^{16}O reaction channel. The γ-ray yields were measured over E_{c.m.}=72.4-344  keV, covering the Gamow window; our energy of 72.4 keV is unprecedentedly low, reported here for the first time. The experiment was performed under the extremely low cosmic-ray-induced background environment of the China JinPing Underground Laboratory, one of the deepest underground laboratories in the world. The present low-energy S factors deviate significantly from previous theoretical predictions, and the uncertainties are significantly reduced. The thermonuclear ^{19}F(p,αγ)^{16}O reaction rate has been determined directly at the relevant astrophysical energies.

Details

Language :
English
ISSN :
1079-7114
Volume :
127
Issue :
15
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
34678013
Full Text :
https://doi.org/10.1103/PhysRevLett.127.152702