论文标题
巨大的狄拉克材料中的异常磁性电磁性行为
Anomalous magneto-thermoelectric behavior in massive Dirac materials
论文作者
论文摘要
对狄拉克材料中电子传输的广泛研究表明,在垂直于激发电流或热梯度的磁场中,磁场阳性耐磁性(MR)和阳性磁铁孔(MTP)。相反,电子传输的测量通常显示出沿激发电流或热梯度的磁场的负纵向MR和负MTP。这归因于狄拉克材料中的手性异常。在这里,我们报告了巨大的狄拉克材料ZRTE5中的磁性磁性传输行为截然不同。尽管薄片在垂直磁场(与其他狄拉克材料不同)中表现出通常观察到的阳性MR,但我们观察到尖锐的负MTP。在平行的磁场中,我们仍然观察到负纵向MR,但是,对于平行于热梯度的场,观察到显着的正MTP。我们的理论计算表明,这种异常的磁性电压行为可以归因于筛选的库仑散射。这项工作证明了杂质散射在拓扑材料的电子传输中的重要性,并深入了解了狄拉克材料中新型的磁通电波现象。
Extensive studies of electron transport in Dirac materials have shown positive magneto-resistance (MR) and positive magneto-thermopower (MTP) in a magnetic field perpendicular to the excitation current or thermal gradient. In contrast, measurements of electron transport often show a negative longitudinal MR and negative MTP for a magnetic field oriented along the excitation current or thermal gradient; this is attributed to the chiral anomaly in Dirac materials. Here, we report a very different magneto-thermoelectric transport behavior in the massive Dirac material ZrTe5. Although thin flakes show a commonly observed positive MR in a perpendicular magnetic field, distinct from other Dirac materials, we observe a sharp negative MTP. In a parallel magnetic field, we still observe a negative longitudinal MR, however, a remarkable positive MTP is observed for the fields parallel to the thermal gradients. Our theoretical calculations suggest that this anomalous magneto-thermoelectric behavior can be attributed to the screened Coulomb scattering. This work demonstrates the significance of impurity scattering in the electron transport of topological materials and provides deep insight into the novel magneto-transport phenomena in Dirac materials.