arXiv · 2609.06286
Direct measurement of $^{18}$F($\alpha,p$)$^{21}$Ne cross sections with ANASEN
Abstract
The $^{18}$F($\alpha,p$)$^{21}$Ne reaction may impact Asymptotic Giant Branch nucleosynthesis and helium burning on accreting white dwarfs. This reaction has never been directly measured, and constraints from a previous time-inverse measurement leave large uncertainties in the reaction rate. We measured $^{18}$F($\alpha,p$)$^{21}$Ne cross sections directly for the first time covering from $2 \leq E_{cm} \leq 4$ MeV. Combining these results with previous work and comparisons to statistical model calculations results in a substantial improvement in uncertainties in the reaction rate. Cross sections were measured in inverse kinematics at TRIUMF-ISAC using a radioactive $^{18}$F beam and ANASEN with an extended $^{4}$He gas target. Protons were detected in arrays of silicon-strip detectors with the measured trajectories and energies allowing reconstruction of the center-of-mass energy and final state in $^{21}$Ne populated. We found the total cross section is in good agreement with statistical calculations, though population of the second excited state in $^{21}$Ne is greater than predicted. This direct measurement is combined with the previous time-inverse measurement and a new reaction rate is calculated for 0.1--3 GK. The uncertainties in the $^{18}$F($\alpha,p$)$^{21}$Ne reaction rate have been reduced to a sufficient level to allow robust predictions from AGB models. The new recommended rate leads to a 45\% increase in $^{19}$F production compared to the previous rate.
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K. S. Davis, J. C. Blackmon, C. M. Deibel, G. L. Wilson, M. Alcorta, L. T. Baby, D. W. Bardayan, S. Carmichael, S. Chakraborty, C. Esparza, J. Glorius, A. I. Karakas, A. Lennarz, B. Kay, J. Henning, G. W. McCann, S. Pain, C. Ruiz, R. Russell, V. Sitaraman, B. Sudarsan, I. Tolstukhin, L. Wagner, I. Wiedenhöver. 2026-09-05. Direct measurement of $^{18}$F($\alpha,p$)$^{21}$Ne cross sections with ANASEN. https://arxiv.org/abs/2609.06286
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