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Large linear magnetoresistance in a transition-metal stannide β-RhSn₄

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arxiv 1705.00304 v1 pith:VQ4ZMIAT submitted 2017-04-30 cond-mat.str-el cond-mat.mtrl-sci

Large linear magnetoresistance in a transition-metal stannide $\beta$-RhSn$_4$

classification cond-mat.str-el cond-mat.mtrl-sci
keywords largemagnetoresistancebetamagneticmaterialsquantumrhsnstannide
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abstract

Materials exhibiting large magnetoresistance may not only be of fundamental research interest, but also can lead to wide-ranging applications in magnetic sensors and switches. Here we demonstrate a large linear-in-field magnetoresistance, $\Delta \rho/\rho$ reaching as high as $\sim$600$\%$ at 2 K under a 9 Tesla field, in the tetragonal phase of a transiton-metal stannide $\beta$-RhSn$_4$. Detailed analyses show that its magnetic responses are overall inconsistent with the classical model based on the multiple electron scattering by mobility fluctuations in an inhomogenous conductor, but rather in line with the quantum effects due to the presence of Dirac-like dispersions in the electronic structure. Our results may help guiding the future quest for quantum magnetoresistive materials into the family of stannides, similar to the role played by PtSn$_4$ with topological node arcs.

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