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Local orthorhombicity in the magnetic C₄ phase of the hole-doped iron-arsenide superconductor Sr_(1-x)Na_(x)Fe₂As₂

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arxiv 1706.03279 v2 pith:CGG4ZSTA submitted 2017-06-10 cond-mat.supr-con

Local orthorhombicity in the magnetic C₄ phase of the hole-doped iron-arsenide superconductor Sr_(1-x)Na_(x)Fe₂As₂

classification cond-mat.supr-con
keywords phasemagneticlocaltetragonaliron-basedlengthorthorhombicscale
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We report temperature-dependent pair distribution function measurements of Sr$_{1-x}$Na$_{x}$Fe$_2$As$_2$, an iron-based superconductor system that contains a magnetic phase with reentrant tetragonal symmetry, known as the magnetic $C_4$ phase. Quantitative refinements indicate that the instantaneous local structure in the $C_4$ phase is comprised of fluctuating orthorhombic regions with a length scale of $\sim$2 nm, despite the tetragonal symmetry of the average static structure. Additionally, local orthorhombic fluctuations exist on a similar length scale at temperatures well into the paramagnetic tetragonal phase. These results highlight the exceptionally large nematic susceptibility of iron-based superconductors and have significant implications for the magnetic $C_4$ phase and the neighboring $C_2$ and superconducting phases.

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