Short-range S-wave contact terms in the chiral nucleon-nucleon force substantially change computed quadrupole collectivity in 6Li and 12C by shifting surface oscillations within one dominant nuclear shape.
Response functions and giant monopole resonances for light to medium-mass nuclei from the \textit{ab initio} symmetry-adapted no-core shell model
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abstract
Using the \textit{ab initio} symmetry-adapted no-core shell model, we compute sum rules and response functions for light to medium-mass nuclei, starting from interactions that are derived in the chiral effective field theory. We investigate electromagnetic transitions of monopole, dipole and quadrupole nature for symmetric nuclei such as $^4$He, $^{16}$O, $^{20}$Ne and $^{40}$Ca. Furthermore, we study giant monopole resonance, which can provide information on the incompressibility of symmetric nuclear matter.
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Unexpected Rise in Nuclear Collectivity from Short-Range Physics
Short-range S-wave contact terms in the chiral nucleon-nucleon force substantially change computed quadrupole collectivity in 6Li and 12C by shifting surface oscillations within one dominant nuclear shape.