论文标题
电流引起的第二次谐波生成在反合对称性狄拉克和Weyl半法
Current-induced second harmonic generation in inversion-symmetric Dirac and Weyl semimetals
论文作者
论文摘要
第二次谐波生成(SHG)是一种基本的非线性光学现象,既广泛用于材料的实验探针,也用于用于光学设备。包括SHG在内的均匀非线性光学响应通常需要破坏反转对称性,因此已被用于研究非中心对称材料。在这里,我们从理论上研究了倒置对称性狄拉克和Weyl半度值的SHG,在直流电流下,通过产生非平衡稳态来破坏反转对称性。基于分析和数值计算,我们发现在应用有限电流时,Dirac和Weyl半法具有强大的SHG。我们对DIRAC半学C $ _3 $的实验估计为$ _2 $和磁性Weyl emimetal Co $ _3 $ sn $ _2 $ _2 $ s $ _2 $表明诱导的敏感性$χ^{(2)} $可用于实用的当前密度可以达到$ 10^5〜 \ MATHRM {PM} \ CDOT \ CDOT \ MATHRM {V}^{ - 1} $带有MID-IR或FAR-IR LIGHT。该值是10 $^2 $ -10 $^4 $倍,比典型的非线性光学材料大。我们还讨论了观察电流诱导的SHG的实验方法,并评论与最近的实验有关的其他拓扑半学中电流诱导的SHG。
Second harmonic generation (SHG) is a fundamental nonlinear optical phenomenon widely used both for experimental probes of materials and for application to optical devices. Even-order nonlinear optical responses including SHG generally require breaking of inversion symmetry, and thus have been utilized to study noncentrosymmetric materials. Here, we study theoretically the SHG in inversion-symmetric Dirac and Weyl semimetals under a DC current which breaks the inversion symmetry by creating a nonequilibrium steady state. Based on analytic and numerical calculations, we find that Dirac and Weyl semimetals exhibit strong SHG upon application of finite current. Our experimental estimation for a Dirac semimetal Cd$_3$As$_2$ and a magnetic Weyl semimetal Co$_3$Sn$_2$S$_2$ suggests that the induced susceptibility $χ^{(2)}$ for practical applied current densities can reach $10^5~\mathrm{pm}\cdot\mathrm{V}^{-1}$ with mid-IR or far-IR light. This value is 10$^2$-10$^4$ times larger than those of typical nonlinear optical materials. We also discuss experimental approaches to observe the current-induced SHG and comment on current-induced SHG in other topological semimetals in connection with recent experiments.