论文标题
通过时间域字段分析揭示固体中的极端非线性动力学
Uncovering Extreme Nonlinear Dynamics in Solids Through Time-Domain Field Analysis
论文作者
论文摘要
由于出现了敏感的PETAHERTZ-SCALE光学视野采样技术,因此具有亚周期分辨率的谐波场的时域分析现在在实验上可行。我们演示了这种时间域的,场分辨的分析如何发现负责固体内部高谐波产生的极端非线性电子动力学。时间依赖性密度功能理论用于模拟由近红外波形驱动的固态带隙系统的谐波产生。特别注意在塑造非线性响应中的内标和频带发射机制都起着至关重要的作用的政权。我们表明,对谐波辐射场的时间域分析确定了非线性光生成基础的内部和带动力学过程之间的相互作用。通过进一步的分析,我们表明,仅在峰值驱动强度和中心驱动波长的略有变化之后,可能会发生对主要发射状态的变化。谐波场的时域分析还首次揭示了驱动脉冲信封内部窗口内主要发射机制快速变化的可能性。最后,我们研究了使用现实参数对谐波场进行谐波场进行时间域分析的实验性生存能力。
Time-domain analysis of harmonic fields with sub-cycle resolution is now experimentally viable due to the emergence of sensitive, on-chip techniques for petahertz-scale optical-field sampling. We demonstrate how such a time-domain, field-resolved analysis uncovers the extreme nonlinear electron dynamics responsible for high-harmonic generation within solids. Time-dependent density functional theory was used to simulate harmonic generation from a solid-state band-gap system driven by near- to mid-infrared waveforms. Particular attention was paid to regimes where both intraband and interband emission mechanisms play a critical role in shaping the nonlinear response. We show that a time-domain analysis of the harmonic radiation fields identifies the interplay between intra- and interband dynamical processes underlying the nonlinear light generation. With further analysis, we show that changes to the dominant emission regime can occur after only slight changes to the peak driving intensity and central driving wavelength. Time-domain analysis of harmonic fields also reveals, for the first time, the possibility of rapid changes in the dominant emission mechanism within the temporal window of the driving pulse envelope. Finally, we examine the experimental viability of performing time-domain analysis of harmonic fields with sub-cycle resolution using realistic parameters.