4.8 Article

Ultrasound evidence for a two-component superconducting order parameter in Sr2RuO4

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NATURE PHYSICS
卷 17, 期 2, 页码 194-+

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NATURE PORTFOLIO
DOI: 10.1038/s41567-020-1033-3

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资金

  1. EUR grant NanoX [ANR-17-EURE-0009]
  2. ANR grant NEPTUN [ANR-19-CE30-0019-01]
  3. Canadian Institute for Advanced Research (CIFAR)
  4. Natural Sciences and Engineering Research Council of Canada (NSERC) [PIN: 123817]
  5. Fonds de recherche du Quebec-Nature et Technologies (FRQNT)
  6. Canada Foundation for Innovation (CFI)
  7. Canada Research Chair
  8. Canada First Research Excellence Fund
  9. JSPS Kakenhi [JP15H5852, JP15K21717, JP17H06136]
  10. JSPS-EPSRC Core-to-Core Program of Oxide Superspin (OSS)
  11. European Research Council [ERC-319286-QMAC]
  12. Agence Nationale de la Recherche (ANR) [ANR-19-CE30-0019] Funding Source: Agence Nationale de la Recherche (ANR)

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Ultrasound experiments show that the superconducting order parameter in strontium ruthenate must have two components. The nature of its superconducting order parameter is still under debate. The observed sharp jump in the shear elastic constant directly implies the superconducting order parameter is of a two-component nature.
Ultrasound experiments show that the superconducting order parameter in strontium ruthenate must have two components. The quasi-two-dimensional metal Sr(2)RuO(4)is one of the best characterized unconventional superconductors, yet the nature of its superconducting order parameter is still under debate(1-3). This information is crucial to determine the pairing mechanism of Cooper pairs. Here we use ultrasound velocity to probe the superconducting state of Sr2RuO4. This thermodynamic probe is sensitive to the symmetry of the material, and therefore, it can help in identifying the symmetry of the superconducting order parameter(4,5). Indeed, we observe a sharp jump in the shear elastic constantc(66)as the temperature is increased across the superconducting transition. This directly implies that the superconducting order parameter is of a two-component nature. On the basis of symmetry arguments and given the other known properties of Sr2RuO4(refs.(6-8)), we discuss which states are compatible with this requirement and propose that the two-component order parameter {d(xz);d(yz)} is the most likely candidate.

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