English

Probable observation of the nuclear Cooper pair mean square radius in superfluid nuclei

Nuclear Theory 2022-03-02 v3 Nuclear Experiment

Abstract

The phenomenon of low-temperature superconductivity is intimately associated with the condensation of weakly bound, very extended, strongly overlapping Cooper pairs, and systematic experimental studies of the associated mean square radius (coherence length) have been made. While the extension of BCS theory to the atomic nucleus has been successful beyond expectation, to our knowledge, no measurement of the nuclear coherence length (expected to be much larger than nuclear dimensions) has been reported in the literature. Recent studies of Cooper pair transfer across a Josephson-like junction, transiently established in a heavy ion collision between superfluid nuclei, have likely changed the situation, providing the experimental input for a quantitative estimate of the nuclear coherence length, as well as the basis for a nuclear analogue of the (ac) Josephson effect.

Keywords

Cite

@article{arxiv.2103.13536,
  title  = {Probable observation of the nuclear Cooper pair mean square radius in superfluid nuclei},
  author = {R. A. Broglia and F. Barranco and G. Potel and E. Vigezzi},
  journal= {arXiv preprint arXiv:2103.13536},
  year   = {2022}
}