论文标题

Weyl半法中的四波混合

Four-wave mixing in Weyl semimetals

论文作者

Almutairi, Sultan, Chen, Qianfan, Tokman, Mikhail, Belyanin, Alexey

论文摘要

Weyl半法(WSM)具有异常的光学响应,起源于其散装和表面电子状态的独特拓扑特性。他们的三阶光学非线性预计将非常强,尤其是在长波长下,由于线性分散体和三维Weyl费米子的高费米速度。在这里,我们在长波长极限中得出WSM的三阶非线性光电电导率,并计算非线性四波混合信号的强度,因为它通过WSM膜传输或从反射几何形状中从材料表面传播。所有结果都是分析性的,并显示了所有相关参数的变化信号强度的缩放。对于有损材料而言,非线性的发电效率令人惊讶地高,每w $^3 $的入射泵功率的订单数量高。最大化非线性信号的最佳条件是在整体等离子体共振的附近实现的。这表明,厚度的皮肤深度顺序的超薄WSM膜可以在紧凑的光电设备中找到应用。

Weyl semimetals (WSMs) have unusual optical response originated from unique topological properties of their bulk and surface electron states. Their third-order optical nonlinearity is expected to be very strong, especially at long wavelengths, due to linear dispersion and high Fermi velocity of three-dimensional Weyl fermions. Here we derive the third-order nonlinear optical conductivity of WSMs in the long-wavelength limit and calculate the intensity of the nonlinear four-wave mixing signal as it is transmitted through the WSM film or propagates away from the surface of the material in the reflection geometry. All results are analytic and show the scaling of the signal intensity with variation of all relevant parameters. The nonlinear generation efficiency turns out to be surprisingly high for a lossy material, of the order of several mW per W$^3$ of the incident pump power. Optimal conditions for maximizing the nonlinear signal are realized in the vicinity of bulk plasma resonance. This indicates that ultrathin WSM films of the order of skin depth in thickness could find applications in compact optoelectronic devices.

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