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Predicting Diamond-like Co-based Chalcogenides as Unconventional High Temperature Superconductors

Superconductivity 2018-10-31 v1 Materials Science Strongly Correlated Electrons

Abstract

We predict Co-based chalcogenides with a diamond-like structure can host unconventional high temperature superconductivity (high-TcT_c). The essential electronic physics in these materials stems from the Co layers with each layer being formed by vertex-shared CoA4_4 (A=S,Se,Te) tetrahedra complexes, a material genome proposed recently by us to host potential unconventional high-TcT_c close to a d7d^7 filling configuration in 3d transition metal compounds. We calculate the magnetic ground states of different transition metal compounds with this structure. It is found that (Mn,Fe,Co)-based compounds all have a G-type antiferromagnetic(AFM) insulating ground state while Ni-based compounds are paramagnetic metal. The AFM interaction is the largest in the Co-based compounds as the three t2gt_{2g} orbitals all strongly participate in AFM superexchange interactions. The abrupt quenching of the magnetism from the Co to Ni-based compounds is very similar to those from Fe to Co-based pnictides in which a C-type AFM state appears in the Fe-based ones but vanishes in the Co-based ones. This behavior can be considered as an electronic signature of the high-TcT_c gene. Upon doping, as we predicted before, this family of Co-based compounds favor a strong d-wave pairing superconducting state.

Keywords

Cite

@article{arxiv.1807.00934,
  title  = {Predicting Diamond-like Co-based Chalcogenides as Unconventional High Temperature Superconductors},
  author = {Jiangping Hu and Yuhao Gu and Congcong Le},
  journal= {arXiv preprint arXiv:1807.00934},
  year   = {2018}
}

Comments

5 pages, 5 figures

R2 v1 2026-06-23T02:48:49.651Z