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Unveiling the multiband metallic nature of the normal state in nickelate La3Ni2O7

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arxiv 2412.09375 v2 pith:SUFSCSSS submitted 2024-12-12 cond-mat.supr-con

classification cond-mat.supr-con
keywords la3ni2o7normalpressurestatesuperconductivityunconventionalhighmagnetic
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The discovery of unconventional superconductivity around 80 K in perovskite nickelates under high pressure has furnished a new platform to explore high-temperature unconventional superconductivity in addition to cuprates. Understanding the normal state of nickelate superconductors is crucial to uncovering the origin of this unconventional superconductivity and gaining further insight into its underlying mechanism. In this study, we systemically studied the transport properties of La3Ni2O7 by tuning the pressure under high magnetic fields. Magnetoresistance (MR) consistently exhibits a quasi-quadratic dependence on the magnetic field across all measured pressures and temperatures. Increased pressure enhances the metallicity of the system and leads to a monotonic increase in MR, which follows the extended Kohler's rule. These results suggest that the normal state of La3Ni2O7 to be a multiband metallic nature.

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