论文标题
在黑磷中访问各向异性非热声子种群
Accessing the anisotropic non-thermal phonon populations in black phosphorus
论文作者
论文摘要
我们结合了飞秒电子弥漫性散射实验和耦合电子 - phonon动力学的第一原理计算,以在黑色磷薄膜中提供超快格子晶状体热化的详细动量分辨图像。测量结果揭示了高度各向异性的非热声子种群的出现,在用轻脉冲激发电子后,几个picseconds持续存在。基于时间依赖性的玻尔兹曼形式和结构因子的计算结合超快动力学模拟,我们重现了实验数据,并确定了主要负责通过电子波耦合以及随后的晶格热化的振动模式。特别是,我们将黑磷的非平衡晶格动力学归因于高度动物辅助的散射过程,这些过程主要由高能光学声子介导。我们的方法为二维材料和范德华异质结构中的微观能量流途径铺平了道路,并且也可以扩展到其他非平衡现象,涉及涉及耦合的电子 - phonon动力学,例如超导性,相位过渡,相位过渡或北极星物理学。
We combine femtosecond electron diffuse scattering experiments and first-principles calculations of the coupled electron-phonon dynamics to provide a detailed momentum-resolved picture of the ultrafast lattice thermalization in a thin film of black phosphorus. The measurements reveal the emergence of highly anisotropic non-thermal phonon populations which persist for several picoseconds following excitation of the electrons with a light pulse. Combining ultrafast dynamics simulations based on the time-dependent Boltzmann formalism and calculations of the structure factor, we reproduce the experimental data and identify the vibrational modes primarily responsible for the carrier relaxation via electron-phonon coupling and the subsequent lattice thermalization via phonon-phonon scattering. In particular, we attribute the non-equilibrium lattice dynamics of black phosphorus to highly-anisotropic phonon-assisted scattering processes, which are primarily mediated by high-energy optical phonons. Our approach paves the way towards unravelling and controlling microscopic energy-flow pathways in two-dimensional materials and van der Waals heterostructures, and may also be extended to other non-equilibrium phenomena involving coupled electron-phonon dynamics such as superconductivity, phase transitions or polaron physics.