论文标题
工程Weyl阶段和非线性厅效应t $ _d $ -mote $ _2 $
Engineering Weyl phases and nonlinear Hall effects in T$_d$-MoTe$_2$
论文作者
论文摘要
由于观察到压力诱导的超导性,外来拓扑相变和非线性量子效应,MOTE $ _2 $最近引起了很多关注。然而,关于Mote $ _2 $的各个观察到的阶段之间的有趣结构相变的争论,以及它们与基础拓扑电子特性的联系。在这项工作中,通过密度功能理论(DFT+U)计算,我们研究了极性t $ _d $和非极性1T $'$阶段的结构相变,参考有假设的高对称性T $ _0 $ _0 $ _0 $ _0 $ _0 $。在T $ _D $相位,我们总共获得了12个WEYL点,可以通过调谐极性声子模式来创建/歼灭,动态操纵并切换。我们还报告了在t $ _d $ -mote $ _2 $中存在可调的非线性霍尔效应,并提出将这种效果用作探针以检测极性(半金属)的极性方向。通过研究维数的作用,我们确定了出现非线性表面响应电流的配置。讨论了可调Weyl相和非线性霍尔效应的潜在技术应用。
MoTe$_2$ has recently attracted much attention due to the observation of pressure-induced superconductivity, exotic topological phase transitions, and nonlinear quantum effects. However, there has been debate on the intriguing structural phase transitions among various observed phases of MoTe$_2$, and their connection to the underlying topological electronic properties. In this work, by means of density-functional theory (DFT+U) calculations, we investigate the structural phase transition between the polar T$_d$ and nonpolar 1T$'$ phases of MoTe$_2$ in reference to a hypothetical high-symmetry T$_0$ phase that exhibits higher-order topological features. In the T$_d$ phase we obtain a total of 12 Weyl points, which can be created/annihilated, dynamically manipulated, and switched by tuning a polar phonon mode. We also report the existence of a tunable nonlinear Hall effect in T$_d$-MoTe$_2$, and propose the use of this effect as a probe for the detection of polarity orientation in polar (semi)metals. By studying the role of dimensionality, we identify a configuration in which a nonlinear surface response current emerges. The potential technological applications of the tunable Weyl phase and the nonlinear Hall effect are discussed.