Fluctuating Ru trimer precursor to a two-stage electronic transition in RuP

ORAL

Abstract

Superconductivity in binary ruthenium pnictides occurs proximal to and upon suppression of a mysterious non-magnetic ground state, preceded by a pseudogap phase associated with Fermi surface instability, and its critical temperature, Tc, is maximized around the pseudogap quantum critical point. By analogy with well-studied isoelectronic iron-based counterparts, antiferromagnetic fluctuations became "usual suspects" as putative mediators of superconducting pairing. Here we report on a high temperature local symmetry breaking in RuP, the parent of the maximum-Tc branch of these novel superconductors, revealed by combined nanostructure-sensitive powder and single crystal X-ray total scattering experiments. Large local Ru6 hexamer distortions associated with orbital-charge trimerization form above the two-stage electronic transition in RuP. While hexamer ordering enables the nonmagnetic ground state and presumed complex oligomerization, the relevance of pseudogap fluctuations for superconductivity emerges as a distinct prospect. As a transition metal system in which partial d-manifold filling combined with high crystal symmetry promotes electronic instabilities, this represents a further example of local electronic precursors underpinning the macroscopic collective behavior of quantum materials [1].

[1] . R. J. Koch, N. Aryal, O. Ivashko, Y. Liu, M. Abeykoon, E. D. Bauer, M. v. Zimmermann, W. Yin, C. Petrovic, and E. S. Bozin, e-print arXiv:2208.09523 (2022).

*Work at Brookhaven National Laboratory was supported by U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences (DOE-BES) under contract No. DE-SC0012704. We acknowledge DESY (Hamburg, Germany), a member of the Helmholtz Association HGF, for the provision of experimental facilities. Work at Los Alamos National Laboratory was performed under the auspices of the US Department of Energy, Office of Basic Energy Sciences, and Division ofMaterials Sciences and Engineering under project "Quantum Fluctuations in Narrow Band Systems".

Publication: R. J. Koch, N. Aryal, O. Ivashko, Y. Liu, M. Abeykoon, E. D. Bauer, M. v. Zimmermann, W. Yin, C. Petrovic, and E. S. Bozin, e-print arXiv:2208.09523 (2022).

Presenters

  • Emil S Bozin

    • Brookhaven Natl Lab

Authors

  • Emil S Bozin

    • Brookhaven Natl Lab
  • Robert Koch

    • Brookhaven National Laboratory
  • Niraj Aryal

    • Brookhaven National Laboratory
  • Oleh Ivashko

    • Deutsches Elektronen-Synchrotron DESY
  • Yu Liu

    • Brookaven National Laboratory, Los Alamos National Laboratory
    • Los Alamos National Laboratory
  • A.M.M. Abeykoon

    • Brookhaven National Laboratory
  • Eric D Bauer

    • Los Alamos Natl Lab
  • Martin von Zimmermann

    • Deutsches Elektronen-Synchrotron DESY
  • Weiguo Yin

    • Brookhaven National Laboratory
  • Cedomir Petrovic

    • Brookhaven National Laboratory