Lee Min-Cheol, Sirica N, Teitelbaum S W, Maznev A, Pezeril T, Tutchton R, Krapivin V, de la Pena G A, Huang Y, Zhao L X, Chen G F, Xu B, Yang R, Shi J, Zhu J-X, Yarotski D A, Qiu X G, Nelson K A, Trigo M, Reis D A, Prasankumar R P
Center for Integrated Nanotechnologies, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Stanford PULSE Institute, SLAC National Accelerator Laboratory, Menlo Park, California 94025, USA.
Phys Rev Lett. 2022 Apr 15;128(15):155301. doi: 10.1103/PhysRevLett.128.155301.
Using femtosecond time-resolved x-ray diffraction, we investigated optically excited coherent acoustic phonons in the Weyl semimetal TaAs. The low symmetry of the (112) surface probed in our experiment enables the simultaneous excitation of longitudinal and shear acoustic modes, whose dispersion closely matches our simulations. We observed an asymmetry in the spectral line shape of the longitudinal mode that is notably absent from the shear mode, suggesting a time-dependent frequency chirp that is likely driven by photoinduced carrier diffusion. We argue on the basis of symmetry that these acoustic deformations can transiently alter the electronic structure near the Weyl points and support this with model calculations. Our study underscores the benefit of using off-axis crystal orientations when optically exciting acoustic deformations in topological semimetals, allowing one to transiently change their crystal and electronic structures.
利用飞秒时间分辨X射线衍射,我们研究了外尔半金属TaAs中光激发的相干声子。我们实验中探测的(112)表面的低对称性使得纵向和剪切声模能够同时被激发,其色散与我们的模拟结果紧密匹配。我们观察到纵向模的谱线形状存在不对称性,而剪切模中则明显没有这种不对称性,这表明存在一个可能由光致载流子扩散驱动的随时间变化的频率啁啾。基于对称性,我们认为这些声学形变可以瞬时改变外尔点附近的电子结构,并通过模型计算来支持这一观点。我们的研究强调了在拓扑半金属中光激发声学形变时使用离轴晶体取向的好处,这使得人们能够瞬时改变它们的晶体结构和电子结构。