Xia Heming, Wu Shuang, Liang Bokai, Ding Jianyang, Jiang Zhicheng, Dong Guohao, Shi Youguo, Shen Dawei, Cheng Jinluo, Liu Wei-Tao, Wu Shiwei
State Key Laboratory of Surface Physics, Key Laboratory of Micro and Nano Photonic Structures (MOE), and Department of physics, Fudan University, Shanghai 200433, China.
National Key Laboratory of Materials for Integrated Circuits, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China.
Sci Adv. 2024 Jun 21;10(25):eadp0575. doi: 10.1126/sciadv.adp0575. Epub 2024 Jun 19.
Dirac fermion in topological materials exhibits intriguing nonlinear optical responses. However, their direct correlation with the linearly dispersed band remains elusive experimentally. Here, we take topological semimetal ZrSiS as a paradigm, unveiling three unique nonlinear optical signatures of Dirac fermion. These signatures include strong quadrupolar response, quantum interference effect, and exponential divergent four-wave mixing (FWM), all of which are described by the prominent third-order nonlinear optical susceptibility. Resonantly enhanced by linear bands, quadrupolar second harmonic generation in centrosymmetric bulk overwhelms the electric-dipole contribution at the surface with inherent inversion symmetry breaking. Furthermore, owing to the interference between multiple resonant transition pathways within linear bands, difference-frequency FWM is several orders of magnitude stronger than sum-frequency FWM and third harmonic generation. The difference-frequency FWM further displays an inverse-square divergence toward degenerate excitation, whose scaling law perfectly matches with the long-sought behavior of Dirac fermion. These signatures lay the solid foundation toward the practical applications of topological materials in nonlinear optoelectronics and photonics.
拓扑材料中的狄拉克费米子表现出有趣的非线性光学响应。然而,它们与线性色散能带的直接关联在实验上仍不明确。在此,我们以拓扑半金属ZrSiS为例,揭示了狄拉克费米子的三种独特非线性光学特征。这些特征包括强四极响应、量子干涉效应和指数发散的四波混频(FWM),所有这些都由显著的三阶非线性光学极化率描述。在中心对称体块中,线性能带共振增强的四极二次谐波产生超过了具有固有反演对称性破缺的表面电偶极贡献。此外,由于线性能带内多个共振跃迁路径之间的干涉,差频FWM比和频FWM及三次谐波产生强几个数量级。差频FWM进一步显示出向简并激发的平方反比发散,其标度律与长期寻找的狄拉克费米子行为完美匹配。这些特征为拓扑材料在非线性光电子学和光子学中的实际应用奠定了坚实基础。