Mo Mianzhen, Tamm Artur, Metsanurk Erki, Chen Zhijiang, Wang Ling, Frost Mungo, Hartley Nicholas J, Ji Fuhao, Pandolfi Silvia, Reid Alexander H, Sun Peihao, Shen Xiaozhe, Wang Yongqiang, Wang Xijie, Glenzer Siegfried, Correa Alfredo A
SLAC National Accelerator Laboratory, Menlo Park, CA 94025, USA.
Laboratory of Physics of Ionic Crystals, Institute of Physics, University of Tartu, W. Ostwaldi tn 1, Tartu, 50411, Estonia.
Sci Adv. 2024 Mar 15;10(11):eadk9051. doi: 10.1126/sciadv.adk9051. Epub 2024 Mar 13.
Phonon scattering in metals is one of the most fundamental processes in materials science. However, understanding such processes has remained challenging and requires detailed information on interactions between phonons and electrons. We use an ultrafast electron diffuse scattering technique to resolve the nonequilibrium phonon dynamics in femtosecond-laser-excited tungsten in both time and momentum. We determine transient populations of phonon modes which show strong momentum dependence initiated by electron-phonon coupling. For phonons near Brillouin zone border, we observe a transient rise in their population on a timescale of approximately 1 picosecond driven by the strong electron-phonon coupling, followed by a slow decay on a timescale of approximately 8 picosecond governed by the weaker phonon-phonon relaxation process. We find that the exceptional harmonicity of tungsten is needed for isolating the two processes, resulting in long-lived nonequilibrium phonons in a pure metal. Our finding highlights that electron-phonon scattering can be the determinant factor in the phonon thermal transport of metals.
金属中的声子散射是材料科学中最基本的过程之一。然而,理解此类过程仍然具有挑战性,并且需要有关声子与电子之间相互作用的详细信息。我们使用超快电子漫散射技术来解析飞秒激光激发的钨中声子的非平衡动力学,包括时间和动量方面。我们确定了声子模式的瞬态布居,这些布居表现出由电子 - 声子耦合引发的强烈动量依赖性。对于靠近布里渊区边界的声子,我们观察到在大约1皮秒的时间尺度上,由于强电子 - 声子耦合,它们的布居出现瞬态上升,随后在大约8皮秒的时间尺度上由较弱的声子 - 声子弛豫过程主导出现缓慢衰减。我们发现,钨的特殊谐波特性对于分离这两个过程是必要的,从而在纯金属中产生长寿命的非平衡声子。我们的发现突出表明,电子 - 声子散射可能是金属中声子热传输的决定性因素。