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- W4207029342 abstract "The strong coupling between magnetic, structural, and electronic degrees of freedom is a prominent feature of Fe-based superconductors. However, the relationship between the degrees of freedom and vortex dynamics remains unclear. In this paper, we measure the vortex pinning energy ${U}_{0}/{k}_{mathrm{B}}$ within the thermally activated flux-flow regime with respect to the pressure-induced phases in a FeSe single crystal. We show that the dependence of ${U}_{0}/{k}_{mathrm{B}}$ on pressure, measured at a magnetic field higher than the crossover field ${H}_{mathrm{cr}}$, follows a trend like those of critical temperature ${T}_{c}(p)$ and the average Fermi velocity ${overline{v}}_{mathrm{F}}(p)$. On the other hand, at magnetic fields lower than ${H}_{mathrm{cr}}, {U}_{0}/{k}_{mathrm{B}}$ increases remarkably before reaching the pressure at which antiferromagnetic (AFM) long-range order occurs. Our results suggest the presence of additional pinning sites, possibly AFM domain boundaries, correlated with the enhanced ${U}_{0}/{k}_{mathrm{B}}$. In addition, in this paper, we provide a universal description of the vortex dynamics in FeSe." @default.
- W4207029342 created "2022-01-26" @default.
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- W4207029342 date "2022-01-21" @default.
- W4207029342 modified "2023-10-16" @default.
- W4207029342 title "Enhanced vortex pinning with possible antiferromagnetic order in FeSe under pressure" @default.
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- W4207029342 doi "https://doi.org/10.1103/physrevb.105.035133" @default.
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