London penetration depth and strong pair-breaking in iron-based superconductors

Abstract

The low temperature variation of the London penetration depth for a number of iron-pnictide and iron-chalcogenide superconductors is nearly quadratic, λ(T) = β Tn with n≈ 2. The coefficient in this dependence shows a robust scaling, β 1/Tc3 across different families of these materials. We associate the scaling with a strong pair-breaking. The same mechanism have recently been suggested to explain the scalings of the specific heat jump, C Tc3, and of the slopes of the upper critical field, dHc2/dT Tc in these materials. This suggests that thermodynamic and electromagnetic properties of the iron-based superconductors can be described within a strong pair-breaking scenario.

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