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Thermodynamic Signatures of Weyl Fermions in NbP

机译:NbP中Weyl费米子的热力学特征

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We present a high magnetic field study of NbP—a member of the monopnictide Weyl semimetal (WSM) family. While the monoarsenides (NbAs and TaAs) have topologically distinct left and right-handed Weyl fermi surfaces, NbP is argued to be “topologically trivial” due to the fact that all pairs of Weyl nodes are encompassed by a single Fermi surface. We use torque magnetometry to measure the magnetic response of NbP up to 60 tesla and uncover a Berry paramagnetic response, characteristic of the topological Weyl nodes, across the entire field range. At the quantum limit B* (≈32?T), τ/B experiences a change in slope when the chemical potential enters the last Landau level. Our calculations confirm that this magnetic response arises from band topology of the Weyl pocket, even though the Fermi surface encompasses both Weyl nodes at zero magnetic field. We also find that the magnetic field pulls the chemical potential to the chiral n?=?0 Landau level in the quantum limit, providing a disorder-free way of accessing chiral Weyl fermions in systems that are “not quite” WSMs in zero magnetic field.
机译:我们介绍了NbP(单肽Weyl半金属(WSM)系列成员)的高磁场研究。虽然单砷化物(NbAs和TaAs)在拓扑结构上左手和右手的Weyl费米费米面,但是NbP被认为“拓扑上很琐碎”,因为所有的Weyl节点对都被一个费米表面所包围。我们使用扭矩磁强计来测量NbP高达60特斯拉的磁响应,并在整个磁场范围内发现Berry顺磁响应,这是拓扑Weyl节点的特征。在量子极限B *(≈32?T)处,当化学势进入最后的Landau能级时,τ/ B会发生斜率变化。我们的计算结果证实,即使费米表面在零磁场下包含两个Weyl节点,该磁响应也来自Weyl袋的能带拓扑。我们还发现,磁场在量子极限中将化学势拉至手性n?=?0 Landau能级,提供了一种在零磁场中不是“完全” WSM的系统中访问手性Weyl费米子的无障碍方法。 。

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