English

Hybridization-Controlled Pseudogap State in the Quantum Critical Superconductor CeCoIn5

Strongly Correlated Electrons 2023-02-22 v1

Abstract

The origin of the partial suppression of the electronic density states in the enigmatic pseudogap behavior, which is at the core of understanding high-TcT_c superconductivity, has been hotly contested as either a hallmark of preformed Cooper pairs or an incipient order of competing interactions nearby. Here, we report the quasi-particle scattering spectroscopy of the quantum critical superconductor CeCoIn5_5, where a pseudogap with energy Δg\Delta_g was manifested as a dip in the differential conductance (dI/dVdI/dV) below the characteristic temperature of TgT_g. When subjected to external pressure, TgT_g and Δg\Delta_g gradually increase, following the trend of increase in quantum entangled hybridization between Ce 4ff moment and conduction electrons. On the other hand, the superconducting (SC) energy gap and its phase transition temperature shows a maximum, revealing a dome shape under pressure. The disparate dependence on pressure between the two quantum states shows that the pseudogap is less likely involved in the formation of SC Cooper pairs, but rather is controlled by Kondo hybridization, indicating that a novel type of pseudogap is realized in CeCoIn5_5.

Keywords

Cite

@article{arxiv.2302.10532,
  title  = {Hybridization-Controlled Pseudogap State in the Quantum Critical Superconductor CeCoIn5},
  author = {Harim Jang and Vuong Thi Anh Hong and Jihyun Kim and Xin Lu and Tuson Park},
  journal= {arXiv preprint arXiv:2302.10532},
  year   = {2023}
}

Comments

4 figures

R2 v1 2026-06-28T08:45:22.528Z