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Observation of orbital two-channel Kondo effect in a ferromagnetic L10-MnGa film

机译:铁磁L10-MnGa薄膜中轨道两通道近藤效应的观察

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摘要

The experimental existence and stability of the fixed point of the two-channel Kondo (2CK) effect displaying exotic non-Fermi liquid physics have been buried in persistent confusion despite the intensive theoretical and experimental efforts in past three decades. Here we report an experimental realization of the two-level system resonant scattering-induced orbital 2CK effect in a ferromagnetic L10-MnGa film, which is signified by a magnetic field-independent resistivity upturn that has a logarithmic and a square-root temperature dependence beyond and below the Kondo temperature of ~14.5?K, respectively. Our results not only evidence the robust existence of orbital 2CK effect even in the presence of strong magnetic fields and long-range ferromagnetic ordering, but also extend the scope of 2CK host materials from nonmagnetic nanoscale point contacts to diffusive conductors of disordered alloys.
机译:尽管在过去的三十年中进行了大量的理论和实验工作,但显示异域非费米液体物理学的两通道近藤(2CK)效应定点的实验存在和稳定性一直困扰着他们。在这里,我们报告了在铁磁L10-MnGa薄膜中两级系统共振散射诱导的轨道2CK效应的实验实现,这由与磁场无关的电阻率上坡表示,该对数具有对数和平方根温度依赖性,和低于近藤温度〜14.5?K。我们的结果不仅证明了即使在强磁场和远距离铁磁有序的情况下,轨道2CK效应也仍然存在,而且还将2CK主体材料的范围从非磁性纳米级点接触扩展到无序合金的扩散导体。

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