Weyl半金属WTe2的非线性光学霍尔效应

Y. Choi, M. Doan, Youngkuk Kim, G. Choi
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引用次数: 3

摘要

普通的霍尔效应是指在存在面外磁场的情况下,电场的作用会产生横向电压。线性霍尔效应通常在通过外加磁场或其本征磁化破坏时间反转对称性的系统中观察到,而非线性霍尔效应通常发生在与不消失的贝里曲率偶极子相关的非磁性系统中。本文报道了在室温下无外加磁场的Weyl半金属WTe2中非线性光学霍尔效应的观察结果。我们观察到光学霍尔效应导致反射光的偏振旋转,称为非线性克尔旋转。非线性克尔旋转与电荷电流和光功率呈线性关系,表现为四阶非线性。我们定量地确定了四阶磁化率,它表现出很强的各向异性,这取决于电荷电流的方向和光偏振。利用Berry曲率多极的对称性分析,我们证明了WTe2晶体对称性所允许的Berry曲率六极可以产生非线性Kerr旋转。同时存在与对称性不相容的边缘信号,表明非线性过程中存在隐藏相位。
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Nonlinear optical Hall effect in Weyl semimetal WTe2
The ordinary Hall effect refers to generation of a transverse voltage upon exertion of an electric field in the presence of an out-of-plane magnetic field. While a linear Hall effect is commonly observed in systems with breaking time-reversal symmetry via an applied external magnetic field or their intrinsic magnetization1, 2, a nonlinear Hall effect can generically occur in non-magnetic systems associated with a nonvanishing Berry curvature dipole3. Here we report, observations of a nonlinear optical Hall effect in a Weyl semimetal WTe2 without an applied magnetic field at room temperature. We observe an optical Hall effect resulting in a polarization rotation of the reflected light, referred to as the nonlinear Kerr rotation. The nonlinear Kerr rotation linearly depends on the charge current and optical power, which manifests the fourth-order nonlinearity. We quantitatively determine the fourth-order susceptibility, which exhibits strong anisotropy depending on the directions of the charge current and the light polarization. Employing symmetry analysis of Berry curvature multipoles, we demonstrate that the nonlinear Kerr rotations can arise from the Berry curvature hexapole allowed by the crystalline symmetries of WTe2. There also exist marginal signals that are incompatible with the symmetries, which suggest a hidden phase associated with the nonlinear process.
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