Molecular Model for Chevrel Phase Superconductivity

ORAL

Abstract

Inspired by the search for emergent properties in molecular assemblies, we studied superconductivity in chevrel phase compounds, which are built on Mo$_6$X$_8$ (X= S, Se, Te) molecular clusters. We used density functional and density functional perturbation theory to calculate the coupling between partially filled molecular orbitals and vibrational modes, thereby identifying the E $\otimes$ e Jahn-Teller interaction as a crucial coupling. Many-body (Eliashberg and dynamical mean field based) methods are used build a theory for superconductivity. Insights from this work that can be used to guide discovery of additional superconductors will be discussed.

*A.J.M. acknowledges support from NSF under contract DMR-1308236. J.C. is supported by the NSF MRSEC program through Columbia in the Center for Precision Assembly of Superstratic and Superatomic Solids under Grant No.DMR-1420634.

Authors

  • Jia Chen

    • Department of Applied Physics, Columbia University
  • Andrew J. Millis

    • Columbia University
    • Columbia University in the City of New York
    • Department of Physics, Columbia University
    • Columbia Univ
  • David Reichman

    • Columbia University
    • Department of Chemistry, Columbia University