Vertical line nodes in the superconducting gap structure of Sr2RuO4
Elena Hassinger, Patrick Bourgeois-Hope, Haruka Taniguchi, Samuel Rene, de Cotret, Gael Grissonnanche, M. Shahbaz Anwar, Yoshiteru Maeno, Nicolas, Doiron-Leyraud, Louis Taillefer

TL;DR
This study uses thermal conductivity measurements to demonstrate that Sr2RuO4 has vertical line nodes in its superconducting gap, challenging the expectation of a nodeless p-wave state and suggesting the presence of accidental nodes.
Contribution
It provides direct experimental evidence for vertical line nodes in Sr2RuO4, clarifying the gap structure and implications for its superconducting order parameter.
Findings
Vertical line nodes are present in Sr2RuO4's gap structure.
Quasiparticle transport persists down to zero temperature.
The gap structure is consistent across different Fermi surface sheets.
Abstract
There is strong experimental evidence that the superconductor Sr2RuO4 has a chiral p-wave order parameter. This symmetry does not require that the associated gap has nodes, yet specific heat, ultrasound and thermal conductivity measurements indicate the presence of nodes in the superconducting gap structure of Sr2RuO4. Theoretical scenarios have been proposed to account for the existence of accidental nodes or deep accidental minima within a p-wave state. To elucidate the nodal structure of the gap, it is essential to know whether the lines of nodes (or minima) are vertical (parallel to the tetragonal c axis) or horizontal (perpendicular to the c axis). Here, we report thermal conductivity measurements on single crystals of Sr2RuO4 down to 50 mK for currents parallel and perpendicular to the c axis. We find that there is substantial quasiparticle transport in the T = 0 limit for both…
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