English

Low-energy magnetic radiation: deviations from GOE

Nuclear Theory 2015-06-22 v1

Abstract

A pronounced spike at low energy in the strength function for magnetic radiation (LEMAR) is found by means of Shell Model calculations, which explains the experimentally observed enhancement of the dipole strength. LEMAR originates from statistical low-energy M1-transitions between many excited complex states. Re-coupling of the proton and neutron high-j orbitals generates the strong magnetic radiation. LEMAR is closely related to Magnetic Rotation. LEMAR is predicted for nuclides participating in the r-process of element synthesis and is expected to change the reaction rates. An exponential decrease of the strength function and a power law for the size distribution of the B(M1)B(M1) values are found, which strongly deviate from the ones of the GOE of random matrices, which is commonly used to represent complex compound states.

Keywords

Cite

@article{arxiv.1407.1721,
  title  = {Low-energy magnetic radiation: deviations from GOE},
  author = {S. Frauendorf and R. Schwengner and K. Wimmer},
  journal= {arXiv preprint arXiv:1407.1721},
  year   = {2015}
}

Comments

Proceedings of the conference on Nuclei and Mesoscopic Physics 2014, MSU, to be published AIP Conference Proceedings

R2 v1 2026-06-22T04:57:03.350Z