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Impurity effects on the normal-state transport properties of Ba0.5K0.5Fe2As2 superconductors

Jun Li, Jie Yuan, Min Ji, Gufei Zhang, Jun-Yi Ge, Hai-Luke Feng, Ya-Hua Yuan, Takeshi Hatano, Wei Hu, Kui Jin, Tobias Schwarz, Reinhold Kleiner, Dieter Koelle, Kazunari Yamaura, Hua-Bing Wang, Pei-Heng Wu, Eiji Takayama-Muromachi, Johan Vanacken, Victor V. Moshchalkov

DOI 10.1103/PhysRevB.90.024512 · Physical Review B

T1

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Abstract

We investigated the normal-state resistivity ρxx(T) and the Hall effect in Zn- and Co-doped Ba0.5K0.5Fe2As2 single-crystalline microbridges. A crossover temperature T* was observed in the temperature dependency of the longitudinal resistivity ρxx(T), which separates ρxx(T) into temperature-linear and temperature-nonlinear regions. Above T*, the carriers in Ba0.5K0.5Fe2As2 and Co-doped Ba0.5K0.5Fe1.94Co0.06As2 demonstrate electronlike behavior and an anomalous nonlinear magnetic field dependence of the Hall voltage with a sign reversal. By contrast, the Zn-doped Ba0.5K0.5Fe1.94Zn0.06As2 behaves like a hole type and the Hall coefficient is independent of the magnetic field. The field-induced sign reversal of the Hall coefficient of undoped and Co-doped samples depends on the field modification on the mobility and hole/electron concentration ratio. The T2-dependent Hall angle of a nonmagnetic Zn-doped crystal is observed as a nearly parallel shift from that of the impurity-free crystal in the low-temperature region, indicating that the Zn induces a weak change of the spinons excitations, while increasing the number of scattering centers. The Co works as a nonmagnetic impurity as well, while it provides both spinons excitations and impurity scattering.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
Ba0.5K0.5Fe2As2

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—Pressure not reportedunknown
Ba0.5K0.5Fe1.94Zn0.06As2

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Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

—Pressure not reportedunknown
Ba0.5K0.5Fe1.94Co0.06As2

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Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

—Pressure not reportedunknown

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