Zhang Yongzhao, Li Jun, Wang Wentao, Tian Huanfang, Gao Wenli, Li Jianqi, Sun Shuaishuai, Yang Huaixin
Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.
Struct Dyn. 2023 Nov 13;10(6):064102. doi: 10.1063/4.0000199. eCollection 2023 Nov.
Ultrafast electron diffraction has been proven to be a powerful tool for the study of coherent acoustic phonons owing to its high sensitivity to crystal structures. However, this sensitivity leads to complicated behavior of the diffraction intensity, which complicates the analysis process of phonons, especially higher harmonics. Here, we theoretically analyze the effects of photoinduced coherent transverse and longitudinal acoustic phonons on electron diffraction to provide a guide for the exploitation and modulation of coherent phonons. The simulation of the electron diffraction was performed in 30-nm films with different optical penetration depths based on the atomic displacements obtained by solving the wave equation. The simulation results exhibit a complex relationship between the frequencies of the phonons and diffraction signals, which highly depends on the laser penetration depth, sample thickness, and temporal stress distribution. In addition, an intensity decomposition method is proposed to account for the in-phase oscillation and high harmonics caused by inhomogeneous excitation. These results can provide new perspectives and insights for a comprehensive and accurate understanding of the lattice response under coherent phonons.
超快电子衍射因其对晶体结构的高灵敏度,已被证明是研究相干声子的有力工具。然而,这种灵敏度导致衍射强度行为复杂,使声子尤其是高次谐波的分析过程变得复杂。在此,我们从理论上分析光致相干横向和纵向声子对电子衍射的影响,为相干声子的开发和调制提供指导。基于通过求解波动方程获得的原子位移,在具有不同光穿透深度的30纳米薄膜中进行了电子衍射模拟。模拟结果显示出声子频率与衍射信号之间的复杂关系,这高度依赖于激光穿透深度、样品厚度和时间应力分布。此外,还提出了一种强度分解方法来解释由非均匀激发引起的同相振荡和高次谐波。这些结果可为全面准确理解相干声子作用下的晶格响应提供新的视角和见解。