English

Tuning superconductivity and spin-vortex fluctuations in CaKFe$_4$As$_4$ through in-plane antisymmetric strains

Superconductivity 2023-07-21 v1 Strongly Correlated Electrons

Abstract

Lattice strains of appropriate symmetry have served as an excellent tool to explore the interaction of superconductivity in the iron-based superconductors with nematic and stripe spin-density wave (SSDW) order, which are both closely tied to an orthorhombic distortion. In this work, we contribute to a broader understanding of the coupling of strain to superconductivity and competing normal-state orders by studying CaKFe4_4As4_4 under large, in-plane strains of B1gB_{1g} and B2gB_{2g} symmetry. In contrast to the majority of iron-based superconductors, pure CaKFe4_4As4_4 exhibits superconductivity with relatively high transition temperature of TcT_c\,\sim\,35 K in proximity of a non-collinear, tetragonal, hedgehog spin-vortex crystal (SVC) order. Through experiments, we demonstrate an anisotropic in-plane strain response of TcT_c, which is reminiscent of the behavior of other pnictides with nematicity. However, our calculations suggest that in CaKFe4_4As4_4, this anisotropic response correlates with the one of the SVC fluctuations, highlighting the close interrelation of magnetism and high-TcT_c superconductivity. By suggesting moderate B2gB_{2g} strains as an effective parameter to change the stability of SVC and SSDW, we outline a pathway to a unified phase diagram of iron-based superconductivity.

Keywords

Cite

@article{arxiv.2307.10604,
  title  = {Tuning superconductivity and spin-vortex fluctuations in CaKFe$_4$As$_4$ through in-plane antisymmetric strains},
  author = {Adrian Valadkhani and Belén Zúñiga Céspedes and Salony Mandloi and Mingyu Xu and Juan Schmidt and Sergey L. Bud'ko and Paul C. Canfield and Roser Valentí and Elena Gati},
  journal= {arXiv preprint arXiv:2307.10604},
  year   = {2023}
}

Comments

5 pages, 4 figures + references and supplemental information