260
6 Physical Applications of the Gamow Shell Model
Energy (MeV)
A
4 He
He
chain
Be
chain
Li
chain
Fig. 6.6 Energies of selected states in the helium, lithium, and beryllium isotopic chains with
A ≤ 9 are calculated using the optimized Gamow shell model interaction with parameters given
in Tables 6.4 and 6.7. The experimental values shown by stars are taken from Ref. [60] (from Ref.
[40])
are related to the sloppy parameters should not be taken too rigorously as they are
computed within the linear regression framework. Only a fully consistent statistical
study, based, e.g. on Bayesian techniques, can fully assess correlations related to
these parameters.
Figure 6.7 shows predictions of the Gamow shell model using the optimized
interaction (6.16–6.18) for several excited states of 7 He, 7 Be, and the ground state of
7 B. The energy and widths are listed in Table 6.10 together with their uncertainties.
6 Physical Applications of the Gamow Shell Model
Energy (MeV)
A
4 He
He
chain
Be
chain
Li
chain
Fig. 6.6 Energies of selected states in the helium, lithium, and beryllium isotopic chains with
A ≤ 9 are calculated using the optimized Gamow shell model interaction with parameters given
in Tables 6.4 and 6.7. The experimental values shown by stars are taken from Ref. [60] (from Ref.
[40])
are related to the sloppy parameters should not be taken too rigorously as they are
computed within the linear regression framework. Only a fully consistent statistical
study, based, e.g. on Bayesian techniques, can fully assess correlations related to
these parameters.
Figure 6.7 shows predictions of the Gamow shell model using the optimized
interaction (6.16–6.18) for several excited states of 7 He, 7 Be, and the ground state of
7 B. The energy and widths are listed in Table 6.10 together with their uncertainties.
