English

The many levels pairing Hamiltonian for two pairs

Nuclear Theory 2007-05-23 v3

Abstract

We address the problem of two pairs of fermions living on an arbitrary number of single particle levels of a potential well (mean field) and interacting through a pairing force. The associated solutions of the Richardson's equations are classified in terms of a number vlv_l, which reduces to the seniority vv in the limit of large values of the pairing strength GG and yields the number of pairs not developing a collective behaviour, their energy remaining finite in the GG\to\infty limit. We express analytically, through the moments of the single particle levels distribution, the collective mode energy and the two critical values Gcr+G_{\rm cr}^{+} and GcrG_{\rm cr}^{-} of the coupling which can exist on a single particle level with no pair degeneracy. Notably Gcr+G_{\rm cr}^{+} and GcrG_{\rm cr}^{-} merge when the number of single particle levels goes to infinity, where they coincide with the GcrG_{\rm cr} (when it exists) of a one pair system, not envisioned by the Richardson theory. In correspondence of GcrG_{\rm cr} the system undergoes a transition from a mean field to a pairing dominated regime. We finally explore the behaviour of the excitation energies, wave functions and pair transfer amplitudes finding out that the former, for G>GcrG>G_{\rm cr}^{-}, come close to the BCS predictions, whereas the latter display a divergence at GcrG_{\rm cr}, signaling the onset of a long range off-diagonal order in the system.

Keywords

Cite

@article{arxiv.nucl-th/0306062,
  title  = {The many levels pairing Hamiltonian for two pairs},
  author = {M. B. Barbaro and R. Cenni and A. Molinari and M. R. Quaglia},
  journal= {arXiv preprint arXiv:nucl-th/0306062},
  year   = {2007}
}

Comments

35 pages, 6 figures, 2 tables, to be published in EPJA