论文标题

二阶和谐波产生的束间电子跳跃的指纹

Fingerprint of the Interbond Electron Hopping in Second-Order Harmonic Generation

论文作者

Li, Liang, Huang, Tengfei, Lan, Pengfei, Zhang, Yinfu, Li, Jiapeng, Zhu, Xiaosong, He, Lixin, Cao, Wei, Lu, Peixiang

论文摘要

我们通过实验探索二阶谐波生成(SHG)中微观电子动力学的指纹。结果表明,束间电子跳跃会引起新的非线性极化来源,即使驱动激光强度比特征原子场低2个数量级,也起着重要的作用。我们的模型预测SHG产量的异常各向异性结构由侧间电子跳跃贡献,这在我们使用ZnO晶体的实验中鉴定出来。此外,提出了具有显式形式的广义二阶敏感性,该敏感性在弱和强场式制度中都提供了统一的描述。我们的工作揭示了电子量表的非线性响应,并将非线性光学器件扩展到了以前未开发的状态,在该状态下,与跨越电子跳跃相关的非线性占主导地位。它为在超快时间尺度上实现可控制的非线性铺平了道路。

We experimentally explore the fingerprint of the microscopic electron dynamics in second-order harmonic generation (SHG). It is shown that the interbond electron hopping induces a novel source of nonlinear polarization and plays an important role even when the driving laser intensity is 2 orders of magnitude lower than the characteristic atomic field. Our model predicts anomalous anisotropic structures of the SHG yield contributed by the interbond electron hopping, which is identified in our experiments with ZnO crystals. Moreover, a generalized second-order susceptibility with an explicit form is proposed, which provides a unified description in both the weak and strong field regimes. Our work reveals the nonlinear responses of materials at the electron scale and extends the nonlinear optics to a previously unexplored regime, where the nonlinearity related to the interbond electron hopping becomes dominant. It paves the way for realizing controllable nonlinearity on an ultrafast time scale.

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