Roy Saswata, Narayan Awadhesh
Undergraduate Programme, Indian Institute of Science, Bangalore 560012, India.
Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore 560012, India.
J Phys Condens Matter. 2022 Jul 22;34(38). doi: 10.1088/1361-648X/ac8091.
In the presence of time reversal symmetry, a non-linear Hall effect can occur in systems without an inversion symmetry. One of the prominent candidates for detection of such Hall signals are Weyl semimetals. In this article, we investigate the Berry curvature induced second and third order Hall effect in multi-Weyl semimetals with topological chargesn=1,2,3. We use low energy effective models to obtain general analytical expressions and discover the presence of a large Berry curvature dipole (BCD) in multi-Weyl semimetals, compared to usual ( = 1) Weyl semimetals. We also study the BCD in a realistic tight-binding lattice model and observe two different kinds of variation with increasing topological charge-these can be attributed to different underlying Berry curvature components. We provide estimates of the signatures of second harmonic of Hall signal in multi-Weyl semimetals, which can be detected experimentally. Furthermore, we predict the existence of a third order Hall signal in multi-Weyl semimetals. We derive the analytical expressions of Berry connection polarizability tensor, which is responsible for third order effects, using a low energy model and estimate the measurable conductivity. Our work can help guide experimental discovery of Berry curvature multipole physics in multi-Weyl semimetals.
在存在时间反演对称性的情况下,无空间反演对称性的体系中会出现非线性霍尔效应。检测此类霍尔信号的一个重要候选体系是外尔半金属。在本文中,我们研究了拓扑荷(n = 1, 2, 3)的多外尔半金属中由贝里曲率诱导的二阶和三阶霍尔效应。我们使用低能有效模型来获得一般的解析表达式,并发现与通常的((n = 1))外尔半金属相比,多外尔半金属中存在大的贝里曲率偶极子(BCD)。我们还在一个实际的紧束缚晶格模型中研究了BCD,并观察到随着拓扑荷增加出现的两种不同变化——这可归因于不同的潜在贝里曲率分量。我们给出了多外尔半金属中霍尔信号二次谐波特征的估计值,这些特征可以通过实验检测到。此外,我们预测了多外尔半金属中三阶霍尔信号的存在。我们使用低能模型推导了负责三阶效应的贝里联络极化率张量的解析表达式,并估计了可测量的电导率。我们的工作有助于指导多外尔半金属中贝里曲率多极物理的实验发现。