arXiv Analytics

Sign in

arXiv:1503.07144 [nucl-th]AbstractReferencesReviewsResources

Infrared length scale and extrapolations for the no-core shell model

K. A. Wendt, C. Forssén, T. Papenbrock, D. Sääf

Published 2015-03-24Version 1

We precisely determine the infrared (IR) length scale of the no-core shell model (NCSM). In the NCSM, the $A$-body Hilbert space is truncated by the total energy, and the IR length can be determined by equating the intrinsic kinetic energy of $A$ nucleons in the NCSM space to that of $A$ nucleons in a $3(A-1)$-dimensional hyper-radial well with a Dirichlet boundary condition for the hyper radius. We demonstrate that this procedure indeed yields a very precise IR length by performing large-scale NCSM calculations for $^{6}$Li. We apply our result and perform accurate IR extrapolations for bound states of $^{4}$He, $^{6}$He, $^{6}$Li, $^{7}$Li. We also attempt to extrapolate NCSM results for $^{10}$B and $^{16}$O with bare interactions from chiral effective field theory over tens of MeV.

Related articles: Most relevant | Search more
arXiv:1301.3450 [nucl-th] (Published 2013-01-15)
Unified ab initio approach to bound and unbound states: no-core shell model with continuum and its application to 7He
arXiv:1003.3428 [nucl-th] (Published 2010-03-17)
No-core shell model for A = 47 and A = 49
arXiv:2411.01861 [nucl-th] (Published 2024-11-04)
Investigation of entanglement in $N = Z$ nuclei within no-core shell model