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Non-saturating quantum magnetization in Weyl semimetal TaAs

机译:Weyl半金属TaAs中的非饱和量子磁化

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摘要

Detecting the spectroscopic signatures of relativistic quasiparticles in emergent topological materials is crucial for searching their potential applications. Magnetometry is a powerful tool for fathoming electrons in solids, by which a clear method for discerning relativistic quasiparticles has not yet been established. Adopting the probes of magnetic torque and parallel magnetization for the archetype Weyl semimetal TaAs in strong magnetic field, we observed a quasi-linear field dependent effective transverse magnetization and a non-saturating parallel magnetization when the system enters the quantum limit. Distinct from the saturating magnetic responses for non-relativistic quasiparticles, the non-saturating signals of TaAs in strong field is consistent with our newly developed magnetization calculation for a Weyl fermion system in an arbitrary angle. Our results establish a high-field thermodynamic method for detecting the magnetic response of relativistic quasiparticles in topological materials.
机译:检测新兴拓扑材料中相对论拟粒子的光谱特征对于搜索其潜在应用至关重要。磁力计是研究固体中电子的有力工具,目前还没有一种清晰的方法可以辨别相对论的准粒子。采用强磁场中原型Weyl半金属TaAs的磁转矩和平行磁化强度的探针,当系统进入量子极限时,我们观察到准线性磁场相关的有效横向磁化强度和非饱和平行磁化强度。与非相对论性准粒子的饱和磁响应不同,TaAs在强场中的非饱和信号与我们新开发的任意角度Weyl费米子系统的磁化计算结果一致。我们的结果建立了一种高场热力学方法,用于检测拓扑材料中相对论拟粒子的磁响应。

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