论文标题
FE78SI9B13金属眼镜中的线性磁化依赖性和大型内部异常霍尔效应
Linear magnetization dependence and large intrinsic anomalous Hall effect in Fe78Si9B13 metallic glasses
论文作者
论文摘要
铁磁金属眼镜(MGS)中异常大厅效应(AHE)的起源尚未完全理解。在这里,在FE78SI9B13毫克中探索了AHE。我们发现在低温下电阻率的行为似乎更有可能是由于结构效应而不是近多型效应。更重要的是,我们首先发现原始实验异常的霍尔电导率(σAH)而不分离外部贡献时具有线性磁化(MZ)依赖性时,当温度变化时,这是内在机制的另一个特征,并表示内在贡献是主导的。此外,通过MZ归一化的σAH与纵向电导率(σxx)无关,该纵向电导率(σxx)显示了无耗散固有机制的特征。我们认为,可以从针对上二氧化材料提出的占用能量整合的浆果曲率的密度来理解固有贡献,并且可以从旋转方向的波动以及浆果曲率和磁化磁化物之间的比例关系从定性地理解线性磁化依赖性。此外,根据拓扑无定形金属的最新理论报告,我们预测了FE78SI9B13 mg中的大型固有σAh(616 s/cm)意味着MGS的某些拓扑特性,等待进一步发现。
The origin of anomalous Hall effect (AHE) in ferromagnetic metallic glasses (MGs) is not yet understood completely. Here, the AHE is explored in Fe78Si9B13 MGs. We find the behavior of resistivity at low temperature seems to be more likely due to structure effect rather than Kondo-type effect. More importantly, we firstly find the primitive experiment anomalous Hall conductivity (σAH) without separation of extrinsic contribution has a linear magnetization (Mz) dependence when temperature is changing, which is another feature of intrinsic mechanism and indicates intrinsic contribution is dominated. Furthermore, the σAH normalized by Mz is independent of longitudinal conductivity (σxx), which shows the characteristic of dissipationless intrinsic mechanism. We suggest the intrinsic contribution can be understood from the density of Berry curvature integrated over occupied energies proposed for aperiodic materials recently, and the linear magnetization dependence can be understood qualitatively from the fluctuations of spin orientation and the proportional relationship between Berry curvature and magnetization. Moreover, based on the recent theory report of topological amorphous metals, we make a prediction that the large intrinsic σAH (616 S/cm) in Fe78Si9B13 MGs implies some topological properties of MGs waiting for further discovery.