Article ID Journal Published Year Pages File Type
1857337 Annals of Physics 2016 20 Pages PDF
Abstract

We analyze the effects of finite-range corrections in halo effective field theory for S-wave proton halo nuclei. We calculate the charge radius to next-to-leading order and the astrophysical SS-factor for low-energy proton capture to fifth order in the low-energy expansion. As an application, we confront our results with experimental data for the SS-factor for proton capture on Oxygen-16 into the excited 1/2+1/2+ state of Fluorine-17. Our low-energy theory is characterized by a systematic low-energy expansion, which can be used to quantify an energy-dependent model error to be utilized in data fitting. Finally, we show that the existence of proton halos is suppressed by the need for two fine tunings in the underlying theory.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Physics and Astronomy (General)
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