English

Superconductivity in Jellium Model Revisited

Superconductivity 2026-06-28 v1

Abstract

We reanalyze superconductivity in jellium model within the dielectric formalism developed by Kirzhnits, Maksimov, and Khomskii (KMK), which is probably the most reliable approach to this model. The linearized KMK integral equation for superconducting transition temperature is analyzed analytically and solved numerically by direct diagonalization to obtain TcT_c dependence on Wigner - Seitz radius rsr_s. As a first systematic extension beyond random - phase approximation (RPA), static Hubbard local - field corrections are incorporated into the dielectric function. Our results in general narrow the interval of possible TcT_c values in comparison with widely scattered results of some of the previous works. For the case of metallic hydrogen our calculations show Tc(rs)T_c(r_s) dependence with characteristic dome with maximum of TcT_c at rsr_s\sim 9.0 of the order of some fractions of Kelvin only, despite the naive expectations based on the high values of pairing Boson frequency. This is due to the weak - coupling regime of superconductivity in jellium model at all densities.

Cite

@article{arxiv.2606.29306,
  title  = {Superconductivity in Jellium Model Revisited},
  author = {Michael V. Sadovskii},
  journal= {arXiv preprint arXiv:2606.29306},
  year   = {2026}
}

Comments

11 pages, 6 figures

R2 v1 2026-07-22T20:15:19.407Z