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Main Authors: Dong, G. X., Wang, X. B., Michel, N., Płoszajczak, M.
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2411.17243
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author Dong, G. X.
Wang, X. B.
Michel, N.
Płoszajczak, M.
author_facet Dong, G. X.
Wang, X. B.
Michel, N.
Płoszajczak, M.
contents The $^{19}$F$(p,γ)$$^{20}$Ne reaction is the only process to break out of the CNO cycle at temperature below 0.1 GK and may serve as the origin of calcium in first generation of stars after the Big Bang. In the recent measurement, the Jinping Underground Nuclear Experiment (JUNA) obtained the rate of $^{19}$F$(p,γ)$$^{20}$Ne reaction, significantly larger than the previously recommended values. In this work, we perform the theoretical studies of the $^{19}$F$(p,γ)$$^{20}$Ne reaction using the Gamow shell model in the coupled-channel representation (GSM-CC). At temperature around 0.1 GK, the predicted rate by GSM-CC is close to the rate found by JUNA. Thus, based on GSM-CC, the break-out reaction $^{19}$F$(p,γ)$$^{20}$Ne from the CNO-cycle might win over its competing reaction $^{19}$F$(p,α)$$^{16}$O, and produce enough calcium in the metal poor stars.
format Preprint
id arxiv_https___arxiv_org_abs_2411_17243
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle $^{19}$F$(p,γ)$$^{20}$Ne reaction rate and the puzzling calcium abundance in metal poor stars
Dong, G. X.
Wang, X. B.
Michel, N.
Płoszajczak, M.
Nuclear Theory
The $^{19}$F$(p,γ)$$^{20}$Ne reaction is the only process to break out of the CNO cycle at temperature below 0.1 GK and may serve as the origin of calcium in first generation of stars after the Big Bang. In the recent measurement, the Jinping Underground Nuclear Experiment (JUNA) obtained the rate of $^{19}$F$(p,γ)$$^{20}$Ne reaction, significantly larger than the previously recommended values. In this work, we perform the theoretical studies of the $^{19}$F$(p,γ)$$^{20}$Ne reaction using the Gamow shell model in the coupled-channel representation (GSM-CC). At temperature around 0.1 GK, the predicted rate by GSM-CC is close to the rate found by JUNA. Thus, based on GSM-CC, the break-out reaction $^{19}$F$(p,γ)$$^{20}$Ne from the CNO-cycle might win over its competing reaction $^{19}$F$(p,α)$$^{16}$O, and produce enough calcium in the metal poor stars.
title $^{19}$F$(p,γ)$$^{20}$Ne reaction rate and the puzzling calcium abundance in metal poor stars
topic Nuclear Theory
url https://arxiv.org/abs/2411.17243