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Low-energy neutron scattering on light nuclei and $^{19}$B as a $^{17}$B-$n$-$n$ three-body system in the unitary limit

Authors :
Carbonell, Jaume
Hiyama, Emiko
Lazauskas, Rimantas
Marqués, F. Miguel
Source :
SciPost Physics Proceedings 2019
Publication Year :
2019

Abstract

We consider the evolution of the neutron-nucleus scattering length for the lightest nuclei. We show that, when increasing the number of neutrons in the target nucleus, the strong Pauli repulsion is weakened and the balance with the attractive nucleon-nucleon interaction results into a resonant virtual state in $^{18}$B. We describe $^{19}$B in terms of a $^{17}$B-$n$-$n$ three-body system where the two-body subsystems $^{17}$B-$n$ and $n$-$n$ are unbound (virtual) states close to the unitary limit. The energy of $^{19}$B ground state is well reproduced and two low-lying resonances are predicted. Their eventual link with the Efimov physics is discussed. This model can be extended to describe the recently discovered resonant states in $^{20,21}$B.<br />Comment: Proceedings for the 24th edition of European Few Body Conference, Surrey, UK, 2-4 September 2019

Details

Database :
arXiv
Journal :
SciPost Physics Proceedings 2019
Publication Type :
Report
Accession number :
edsarx.1912.05427
Document Type :
Working Paper