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Discovery of Superconductivity in Non-centrosymmetric Semimetal LaRhGe<sub>3</sub>

ORAL

Abstract

LaRhGe3 crystalizes in the non-centrosymmetric space group I4mm with a strong asymmetric spin-orbit coupling (ASOC) due to containing Rh[1], which makes it a promising platform to search for spin-triplet superconductivity with time-reversal symmetry breaking (TRSB) [2]. We have grown single crystals of LaRhGe3 using a self-flux method for the first time. I present our discovery of Type-I superconductivity in LaRhGe3 with evidence from heat capacity and µSR experiments, with a critical temperature Tc of 0.385 K and critical field Hc of 2.1 mT [3]. Despite the strong ASOC in LaRhGe3, we do not detect any evidence for TRSB across Tc in LaRhGe3 in our zero-field µSR experiment. Our results are consistent with LaRhGe3 being a weak-coupling s-wave superconductor with a dominant singlet pairing. We also characterize the normal state of LaRhGe3 with temperature and field dependent electrical transport. We find a non-saturating magnetroresistance at 2 K of 800% at 9 T, which is related to electron-hole compensation in LaRhGe3. We comment on semimetallicity and topology from our band structure calculations on LaRhGe3. Finally, we find that above the onset of superconductivity, LaRhGe3 exhibits an unusual temperature dependence in its resistivity, ρ ~ T 3, suggestive of possible non-Fermi liquid behavior. To elucidate this we investigate the Raman spectra of LaRhGe3 at low temperature.

[1] T. Kawai et al., JPSJ 77, 064717 (2008).

[2] M. Smidman et al., Rep. Prog. Phys. 80, 036501 (2017).

[3] M. Oudah, et al., in preparation.

Presenters

  • Mohamed Oudah

    University of British Columbia

Authors

  • Mohamed Oudah

    University of British Columbia

  • Samikshya Sahu

    The University of British Columbia

  • Hsiang-Hsi Kung

    University of British Columbia

  • Niclas P Heinsdorf

    Max-Planck Institute for Solid State Research

  • Armin Schulz

    Max-Planck Institute for Solid State Research

  • Marta-Villa De Toro Sanchez

    University of British Columbia, The University of Edinburgh, TRIUMF, 4004 Wesbrook Mall, Vancouver, BC V6T 2A3, Canada

  • Yipeng Cai

    University of British Columbia

  • Kenji M Kojima

    University of British Columbia

  • Andreas P Schnyder

    Max Planck Institute for Solid State Research, Max Planck Institute for Solid State Physics

  • Bernhard Keimer

    Max Planck Institute for Solid State Physics, Max Planck Institute for Solid State Research, Max-Planck-Institute for Solid State Research

  • Douglas A Bonn

    University of British Columbia, The University of British Columbia

  • Alannah M Hallas

    University of British Columbia