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Microscopic Ginzburg-Landau theory and singlet ordering in Sr2RuO4

  • Glenn Wagner
  • , Henrik S Røising*
  • , Felix Flicker
  • , Steven H Simon
  • *Corresponding author for this work

Research output: Contribution to journalArticle (Academic Journal)peer-review

10 Citations (Scopus)

Abstract

The long-standing quest to determine the superconducting order of Sr2⁢RuO4 (SRO) has received renewed attention after recent nuclear magnetic resonance (NMR) Knight shift experiments have cast doubt on the possibility of spin-triplet pairing in the superconducting state. As a putative solution, encompassing a body of experiments conducted over the years, a (𝑑+𝑖⁢𝑔)-wave order parameter caused by an accidental near degeneracy has been suggested [S. A. Kivelson et al., npj Quantum Mater. 5, 43 (2020)]. Here we develop a general Ginzburg–Landau theory for multiband superconductors. We apply the theory to SRO and predict the relative size of the order parameter components. The heat capacity jump expected at the onset of the second-order parameter component is found to be above the current threshold deduced by the experimental absence of a second jump. Our results tightly restrict theories of 𝑑+𝑖⁢𝑔 order, and other candidates caused by a near degeneracy, in SRO. We discuss possible solutions to the problem.
Original languageEnglish
Article number134506
JournalPhysical Review B
Volume104
Issue number13
DOIs
Publication statusPublished - 6 Oct 2021

Bibliographical note

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© 2021 American Physical Society.

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