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arxiv: 1804.07293 · v4 · pith:MA2ULYT4new · submitted 2018-04-19 · ❄️ cond-mat.supr-con

Anisotropy of the DC conductivity due to orbital-selective spin fluctuations in the nematic phase of iron superconductors

classification ❄️ cond-mat.supr-con
keywords anisotropyconductivityspinsuperconductorsbelowdc-conductivityfluctuationsiron-based
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We study the dc conductivity of iron-based superconductors within the orbital-selective spin fluctuation scenario. Within this approach, the anisotropy of spin fluctuations below the spin-nematic transition at T$_S$ is also responsible for the orbital ordering, induced by nematic self-energy corrections to the quasiparticle dispersion. As a consequence, the anisotropy of the dc conductivity below T$_S$ is determined not only by the anisotropy of the scattering rates as expected within a spin-nematic scenario, but also by the modification of the Fermi velocity due to the orbital reconstruction. More interestingly, it turns out that these two effects contribute to the dc-conductivity anisotropy with opposite signs. By using realistic band-structure parameters we compute the conductivity anisotropy for both 122 and FeSe compounds, discussing the possible origin of the different dc-conductivity anisotropy observed experimentally in these two families of iron-based superconductors.

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