English

Individual dipole toroidal states: main features and search in (e,e') reaction

Nuclear Theory 2019-12-11 v2

Abstract

Individual low-energy E1 toroidal and compressional states (TS and CS) produced by the convective nuclear current jc{\bf j}_{\rm c} were recently predicted for 24^{24}Mg in the framework of quasiparticle random-phase-approximation (QRPA) with Skyrme forces. In the present QRPA study with Skyrme parametrization SLy6, we explore in more detail properties of these states (toroidal and compressional responses, current distributions, and transitions probabilities B(E1K,0+01K),  B(E3K,0+03K)B(E1K, 0^+0 \to 1^-K),\; B(E3K, 0^+0 \to 3^-K), B(M2K,0+02K)B(M2K, 0^+0 \to 2^-K) with K=K=0 and 1) and analyze the possibility to discriminate and identify TS in inelastic electron scattering to back angles. The interplay of the convective jc{\bf j}_{\rm c} and magnetization jm{\bf j}_{\rm m} nuclear currents is thoroughly scrutinized. A two-step scheme for identification of TS in (e,e)(e,e') reaction is proposed. The key element of the scheme is the strong interference of the orbital and spin contributions, resulting in specific features of E1 and M2 transversal form factors.

Keywords

Cite

@article{arxiv.1904.08302,
  title  = {Individual dipole toroidal states: main features and search in (e,e') reaction},
  author = {V. O. Nesterenko and A. Repko and J. Kvasil and P. -G. Reinhard},
  journal= {arXiv preprint arXiv:1904.08302},
  year   = {2019}
}

Comments

10 pages, 9 figures. The previous version of the paper was crucially revised and enlarged in both i) description on main features and ii) proposals for (e,e') reaction. Submitted to Phys. Rev. C

R2 v1 2026-06-23T08:42:48.378Z