论文标题

Cu掺杂的抗性效应和三重归化状态

Weak antilocalization effect and triply degenerate state in Cu-doped CaAuAs

论文作者

Malick, Sudip, Ghosh, Arup, Barman, Chanchal K., Alam, Aftab, Hossain, Z., Mandal, Prabhat, Nayak, J.

论文摘要

通过电子带结构计算,电阻率和磁转运测量测量,研究了拓扑狄拉克半学CAAUAS中AU位点上50 \%Cu掺杂的影响。电子结构计算A建议通过合金工程从Dirac到CAAUAS中的三分点状态的破碎对称驱动的拓扑相变。作为化合物的Caauas和Caau $ _ {0.5} $ _ {0.5} $的电阻率都显示出金属行为。在CAAUAS中观察到了非饱和的准磁阻(MR)行为。另一方面,掺杂化合物的MR在低场机制中显示出明显的Cusplike特征。 MR在caau $ _ {0.5} $ cu $ _ {0.5} $中的这种行为归因于弱反静电(WAL)效应。使用不同的理论模型分析WAL效应,包括半经典的$ \ sim \ sqrt {b} $,其中包括三维WAL和修改的Hikami-Larkin-Nagaoka模型。在纵向MR中也观察到了强大的WAL效应,该纵向MR被广义的Altshuler-Aronov模型很好地描述。我们的研究表明,WAL效应起源于弱障碍和旋转轨道耦合的散装状态。有趣的是,我们还观察到纵向MR中手性异常的签名,当时沿$ c $轴施加了电流和场时。霍尔电阻率测量表明,这些化合物中的电荷传导机制由浓度$ \ sim $ 10 $ 10 $^{20} $ cm $^{ - 3} $和Mobility $ \ sim 10^2 $ cm $ $ $^2 $^2 $ v $ v $ v $ v $ v $ v $^{ - 1} $ s $ s $ s $ s $^{ - 1} $主导。

The effect of 50\% Cu doping at the Au site in the topological Dirac semimetal CaAuAs is investigated through electronic band structure calculations, electrical resistivity, and magnetotransport measurements. Electronic structure calculations a suggest broken-symmetry-driven topological phase transition from the Dirac to triple-point state in CaAuAs via alloy engineering. The electrical resistivity of both the CaAuAs and CaAu$_{0.5}$Cu$_{0.5}$As compounds shows metallic behavior. Nonsaturating quasilinear magnetoresistance (MR) behavior is observed in CaAuAs. On the other hand, MR of the doped compound shows a pronounced cusplike feature in the low-field regime. Such behavior of MR in CaAu$_{0.5}$Cu$_{0.5}$As is attributed to the weak antilocalization (WAL) effect. The WAL effect is analyzed using different theoretical models, including the semiclassical $\sim\sqrt{B}$ one which accounts for the three-dimensional WAL and modified Hikami-Larkin-Nagaoka model. Strong WAL effect is also observed in the longitudinal MR, which is well described by the generalized Altshuler-Aronov model. Our study suggests that the WAL effect originates from weak disorder and the spin-orbit coupled bulk state. Interestingly, we have also observed the signature of chiral anomaly in longitudinal MR, when both current and field are applied along the $c$ axis. The Hall resistivity measurements indicate that the charge conduction mechanism in these compounds is dominated by the holes with a concentration $\sim$10$^{20}$ cm$^{-3}$ and mobility $\sim 10^2$ cm$^2$ V$^{-1}$ S$^{-1}$.

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