论文标题

量子振荡探测节点线半径caagas的费米表面拓扑

Quantum oscillations probe the Fermi surface topology of the nodal-line semimetal CaAgAs

论文作者

Kwan, Y. H., Reiss, P., Han, Y., Bristow, M., Prabhakaran, D., Graf, D., McCollam, A., Parameswaran, S. A., Coldea, A. I.

论文摘要

节点半学是一个独特的平台,可以探索通过在量子振荡中累积非平凡阶段来体现的异常带结构的拓扑特征。在这里,我们报告了一项研究候选拓扑结节线半径CAAGAS的DE HAASVAN ALPHEN振荡,该研究使用磁场中的扭矩测量值最多为45吨。我们的结果与源自节结节环的圆环费米表面的计算进行了比较。我们发现仅在其中一个振荡频率中仅在一个非平凡的浆果相移的证据。我们将其解释为一个由半古典电子Landau轨道产生的浆果相,当磁场位于镜像(AB)平面中时,该轨道与节点环连接在一起。此外,额外的浆果相在与淋巴结不连接的相同方向上旋转第二个轨道的磁场时积聚。由于缺乏反转对称性,在Caagas中预计这些效果。我们的研究在实验上表明,Caagas是探索淋巴结线半学物理学的理想平台,我们的方法可以扩展到存在琐碎和非平凡振荡的其他材料。

Nodal semimetals are a unique platform to explore topological signatures of the unusual band structure that can manifest by accumulating a nontrivial phase in quantum oscillations. Here we report a study of the de Haasvan Alphen oscillations of the candidate topological nodal line semimetal CaAgAs using torque measurements in magnetic fields up to 45 T. Our results are compared with calculations for a toroidal Fermi surface originating from the nodal ring. We find evidence of a nontrivial Berry phase shift only in one of the oscillatory frequencies. We interpret this as a Berry phase arising from the semi-classical electronic Landau orbit which links with the nodal ring when the magnetic field lies in the mirror (ab) plane. Furthermore, additional Berry phase accumulates while rotating the magnetic field for the second orbit in the same orientation which does not link with the nodal ring. These effects are expected in CaAgAs due to the lack of inversion symmetry. Our study experimentally demonstrates that CaAgAs is an ideal platform for exploring the physics of nodal line semimetals and our approach can be extended to other materials in which trivial and nontrivial oscillations are present.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源