Spin fluctuations from Bogoliubov Fermi surfaces in the superconducting state of S-substituted FeSe
arXiv:2306.16689 · doi:10.1038/s42005-023-01286-x
Abstract
The study of the iron-based superconductor, FeSe, has resulted in various topics, such as the interplay among superconductivity, nematicity, and magnetism, Bardeen-Cooper-Schrieffer Bose-Einstein-condensation (BCS-BEC) crossover, and Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) superconductivity. Recently, topologically protected nodal Fermi surfaces, referred to as Bogoliubov Fermi surfaces (BFSs), have garnered much attention. A theoretical model for the S-substituted FeSe system demonstrated that BFSs can manifest under the conditions of spin-orbit coupling, multi-band systems, and superconductivity with time-reversal symmetry breaking. Here we report the observation of spin fluctuations originating from BFSs in the superconducting (SC) state via Se-nuclear magnetic resonance measurements to 100 mK. In a heavily S-substituted FeSe, we found an anomalous enhancement of low-energy spin fluctuations deep in the SC state, which cannot be explained by an impurity effect. Such unusual behavior implies the presence of significant spin fluctuations of Bogoliubov quasiparticles, which are associated with possible nesting properties between BFSs.
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Cited by in corpus (6)
- Lifting of gap nodes by disorder in ultranodal superconductor candidate FeSe1-xSx
- Spin fluctuations in the ultranodal superconducting state of Fe(Se,S)
- Supercurrent-induced antiferromagnetic order and spin-triplet pair generation in quantum critical d-wave superconductors
- Quasiparticle interaction originating from Bogoliubov Fermi Surfaces under pressure in 18%-S substituted FeSe studied via NMR
- Thermoelectric effect in a superconductor with Bogoliubov Fermi surfaces
- Evolution and Instability of Bogoliubov Fermi Surfaces under Zeeman Field