PaperPanorama

Nuclear Theory·nucl-th

Wednesday·June 20, 2018

7 papers2 primary·5 cross-listed

  1. 01

    Analysing supersymmetric transformed -nucleus potentials with electric-multipole transitions

    T. Arai · W. Horiuchi · D. Baye

    Alpha(He)-cluster models have often been used to describe light nuclei. Towards the application to multi-cluster systems involving heavy clusters, we study the relative wave functions of the O and Ca systems generated from phase-shift-equivalent potentials. In general, a potential between clusters is deep accommodating several redundant bound states which should be removed in an appropriate way. To avoid such a complicated computation, we generate a shallow-singular potential by using supersymmetric transformations from the original deep potential. Changes in the relative wave functions by the transformations are quantified with electric-multipole transitions which give a different radial sensitivity to the wave function depending on their multipolarity. Despite the fact that the original and transformed potentials give exactly the same phase shift, some observables are unfavorably modified. A possible way to obtain a desired supersymmetric potential is proposed.

    nucl-thNPA(2018)·7 citations
  2. 02

    Collapse to the Center and Ambiguity in the Asymptotic Behavior of the Off-Shell Scattering Amplitude in Singular Three-Body Problems

    Alexander E. Kudryavtsev🇷🇺 · Alexander I. Romanov🇷🇺

    We discuss some examples of equations of the three-body problem with the oscillating asymptotics at large momentum: (i) the fixed-center approximation, (ii) the unitarized equation in the fixed-center approximation, (iii) Skornyakov--Ter-Martirosyan equation, and (iv) equations with operators used in the effective field theory, i.e., which can be expanded in power-series with positive powers of momentum. We show that in the aforementioned three-body problems the situation analogous to the falling down to the center in the two-body problem takes place -- there appears an infinite number of bound states. The energy of these states is not bounded from below. In that sense the situation is close to the falling down to the center in the two-body problem.

    nucl-thhep-phPhys.Atom.Nucl.(2018)·0 citations

Affiliations

first authorsco-authorsvia INSPIRE