English

Influence of strong-coupling and retardation effects on superconducting state in ${\rm YB_{6}}$ compound

Superconductivity 2018-08-15 v1

Abstract

In the framework of strong-coupling formalism, we have calculated the thermodynamic parameters of superconducting state in the YB6{\rm YB_{6}} compound. The values of critical temperature (TCT_{C}) are 9.59.5~K and 7.97.9~K for the Coulomb pseudopotential μ=0.1\mu^{\star}=0.1 and 0.20.2, respectively. In the paper, we have determined the low temperature values of order parameter (Δ(0)\Delta(0)), specific heat jump at the critical temperature (ΔC(TC)\Delta C(T_{C})), and thermodynamic critical field (HC(0)H_C(0)). The dimensionless thermodynamic ratios: RΔ=2Δ(0)/kBTCR_{\Delta}=2\Delta\left(0\right)/{k_BT_C}, RC=ΔC(TC)/CN(TC)R_C=\Delta C\left(T_C\right)/C^N\left(T_C\right), and RH=TCCN(TC)/HC2(0)R_H=T_CC^N\left(T_C\right)/H_C^2\left(0\right) are equal to: RΔ(μ){4.48,4.35}R_{\Delta}\left(\mu^{\star}\right)\in\lbrace 4.48,4.35\rbrace, RC(μ){2.62,2.55}R_{C}\left(\mu^{\star}\right)\in\lbrace 2.62,2.55\rbrace, and RH(μ){0.146,0.157}R_{H}\left(\mu^{\star}\right)\in\lbrace 0.146,0.157\rbrace. Due to the significant strong-coupling and retardation effects (kBTC/ωln0.1k_{B}T_{C} / \omega_{\rm ln}\sim 0.1) those values highly deviate from the predictions of BCS theory.

Keywords

Cite

@article{arxiv.1805.02694,
  title  = {Influence of strong-coupling and retardation effects on superconducting state in ${\rm YB_{6}}$ compound},
  author = {A. M. Bujak and K. A. Szewczyk and M. Kostrzewa and K. M. Szczȩśniak and M. A. Sowińska},
  journal= {arXiv preprint arXiv:1805.02694},
  year   = {2018}
}

Comments

5 pages, 4 figures