Nonlinear uniaxial pressure dependence of in iron-based superconductors
arXiv:1803.00717 · doi:10.1103/PhysRevResearch.1.033154
Abstract
We have systematically studied the effects of in-plane uniaxial pressure on the superconducting transition temperature in many iron-based superconductors. The change of with is composed of linear and nonlinear components. The latter can be described as a quadratic term plus a much smaller fourth-order term. In contrast to the linear component, the nonlinear dependence of displays a pronounced in-plane anisotropy, which is similar to the anisotropic response of the resistivity to . As a result, it can be attributed to the coupling between the superconducting and nematic orders, in accordance with the expectations of a phenomenological Landau theory. Our results provide direct evidences for the interplay between nematic fluctuations and superconductivity, which may be a common behavior in iron-based superconductors.
6 pages, 7 figures