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Magnetotransport properties in the magnetic phase of BaFe2−xTxAs2(T=Co,Ni): A magnetic excitations approach
Because of their complex Fermi surfaces, the identification of the physical phenomena contributing to electronic scattering in the Fe-based superconductors is a difficult task. Here, we report on the electrical resistivity, magnetoresistance, and Hall effect in two series of BaFe2−xTxAs2(T=Co,Ni) cr...
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Published in: | Physical review. B 2018-03, Vol.97 (10) |
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container_title | Physical review. B |
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creator | Peña, J P Piva, M Piva S Rosa, P F Pagliuso, P G Adriano, C Grant, T Fisk, Z Baggio-Saitovitch, E Pureur, P |
description | Because of their complex Fermi surfaces, the identification of the physical phenomena contributing to electronic scattering in the Fe-based superconductors is a difficult task. Here, we report on the electrical resistivity, magnetoresistance, and Hall effect in two series of BaFe2−xTxAs2(T=Co,Ni) crystals with different values of x. The T contents were chosen so that the majority of the investigated samples present an intermediate magnetically ordered state and a superconducting ground state. We interpret the obtained results in terms of scattering of charge carriers by magnetic excitations instead of describing them as resulting uniquely from effects related to multiple-band conduction. Our samples are single crystals from the structural point of view and their overall magnetotransport properties are dominated by a single magnetic state. |
doi_str_mv | 10.1103/PhysRevB.97.104502 |
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subjects | Conduction bands Crystal structure Current carriers Fermi surfaces Hall effect Magnetic properties Magnetism Magnetoresistance Magnetoresistivity Scattering Single crystals Superconductors Transport properties |
title | Magnetotransport properties in the magnetic phase of BaFe2−xTxAs2(T=Co,Ni): A magnetic excitations approach |
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