中文

基于费米子凝聚量子相变的强相关二维费米液体模型

强关联电子 2007-05-23 v1 超导电性

摘要

presented a theory of strongly correlated electron or hole liquids with the fermion condensate and applied it to the consideration of quasiparticle excitations in high temperature superconductors, in their superconducting and normal states. This theory describes maximum values of the superconducting gap which can be as big as Δ10.1ϵF\Delta_1\sim 0.1\epsilon_F, with ϵF\epsilon_F being the Fermi level. We show that the critical temperature 2TcΔ12T_c\simeq\Delta_1. If there exists the pseudogap above TcT_c then 2TΔ12T^*\simeq\Delta_1, and TT^* is the temperature at which the pseudogap vanishes. A discontinuity in the specific heat at TcT_c is calculated. The transition from conventional superconductors to high-TcT_c ones as a function of the doping level is investigated. The single-particle excitations and their lineshape are also considered. Analyzing experimental data on the high temperature superconductivity in different materials induced by field-effect doping, we show that all these facts can be understood within a theory of the superconductivity based on the fermion condensation quantum phase transition, which can be conceived of as a universal cause of the superconductivity. The main features of room-temperature superconductors are outlined.

关键词

引用

@article{arxiv.cond-mat/0206575,
  title  = {Model of Strongly Correlated 2D Fermi Liquids Based on Fermion-Condensation Quantum Phase Transition},
  author = {V. R. Shaginyan},
  journal= {arXiv preprint arXiv:cond-mat/0206575},
  year   = {2007}
}

备注

16 pages, Revtex