Anomalous Suppression of the Orthorhombic Lattice Distortion in Superconducting Ba(Fe1−xCox)2As2
High-resolution x-ray diffraction measurements reveal an unusually strong response of the lattice to superconductivity in $\mathrm{Ba}({\mathrm{Fe}}_{1\ensuremath{-}x}{\mathrm{Co}}_{x}{)}_{2}{\mathrm{As}}_{2}$. The orthorhombic distortion of the lattice is suppressed and, for Co doping near $x=0.063$, the orthorhombic structure evolves smoothly back to a tetragonal structure. We propose that the coupling between orthorhombicity and superconductivity is indirect and arises due to the magnetoelastic coupling, in the form of emergent nematic order, and the strong competition between magnetism and superconductivity.