Back to Search Start Over

First Direct Measurement Constraining the ^{34}Ar(α,p)^{37}K Reaction Cross Section for Mixed Hydrogen and Helium Burning in Accreting Neutron Stars.

Authors :
Browne J
Chipps KA
Schmidt K
Schatz H
Ahn S
Pain SD
Montes F
Ong WJ
Greife U
Allen J
Bardayan DW
Blackmon JC
Blankstein D
Cha S
Chae KY
Febbraro M
Hall MR
Jones KL
Kontos A
Meisel Z
O'Malley PD
Schmitt KT
Smith K
Smith MS
Thompson P
Toomey R
Vostinar M
Walter D
Source :
Physical review letters [Phys Rev Lett] 2023 May 26; Vol. 130 (21), pp. 212701.
Publication Year :
2023

Abstract

The rate of the final step in the astrophysical αp process, the ^{34}Ar(α,p)^{37}K reaction, suffers from large uncertainties due to a lack of experimental data, despite having a considerable impact on the observable light curves of x-ray bursts and the composition of the ashes of hydrogen and helium burning on accreting neutron stars. We present the first direct measurement constraining the ^{34}Ar(α,p)^{37}K reaction cross section, using the Jet Experiments in Nuclear Structure and Astrophysics gas jet target. The combined cross section for the ^{34}Ar,Cl(α,p)^{37}K,Ar reaction is found to agree well with Hauser-Feshbach predictions. The ^{34}Ar(α,2p)^{36}Ar cross section, which can be exclusively attributed to the ^{34}Ar beam component, also agrees to within the typical uncertainties quoted for statistical models. This indicates the applicability of the statistical model for predicting astrophysical (α,p) reaction rates in this part of the αp process, in contrast to earlier findings from indirect reaction studies indicating orders-of-magnitude discrepancies. This removes a significant uncertainty in models of hydrogen and helium burning on accreting neutron stars.

Details

Language :
English
ISSN :
1079-7114
Volume :
130
Issue :
21
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
37295108
Full Text :
https://doi.org/10.1103/PhysRevLett.130.212701