Girotto Nina, Novko Dino
Centre for Advanced Laser Techniques, Institute of Physics, 10000 Zagreb, Croatia.
J Phys Chem Lett. 2023 Oct 5;14(39):8709-8716. doi: 10.1021/acs.jpclett.3c01905. Epub 2023 Sep 21.
Ultrafast electron-phonon relaxation dynamics in graphene hides many distinct phenomena, such as hot phonon generation, dynamical Kohn anomalies, and phonon decoupling, yet it still remains largely unexplored. Here, we unravel intricate mechanisms governing the vibrational relaxation and phonon dressing in graphene at a highly nonequilibrium state by means of first-principles techniques. We calculate dynamical phonon spectral functions and momentum-resolved line widths for various stages of electron relaxation and find photoinduced phonon hardening, overall increase of relaxation rate and nonadiabaticity, as well as phonon gain. Namely, the initial stage of photoexcitation is found to be governed by strong phonon anomalies of finite-momentum optical modes along with incoherent phonon production. The population inversion state, on the other hand, allows the production of coherent and strongly coupled phonon modes. Our research provides vital insights into the electron-phonon coupling phenomena in graphene and serves as a foundation for exploring nonequilibrium phonon dressing in materials where ordered states and phase transitions can be induced by photoexcitation.
石墨烯中的超快电子 - 声子弛豫动力学隐藏着许多独特现象,如热声子产生、动态科恩反常和声子解耦,但在很大程度上仍未得到充分探索。在这里,我们借助第一性原理技术揭示了在高度非平衡状态下控制石墨烯中振动弛豫和声子修饰的复杂机制。我们计算了电子弛豫各个阶段的动态声子谱函数和动量分辨线宽,发现了光致声子硬化、弛豫率和非绝热性的整体增加以及声子增益。具体而言,光激发的初始阶段由有限动量光学模式的强声子反常以及非相干声子产生所主导。另一方面,粒子数反转状态允许产生相干且强耦合的声子模式。我们的研究为石墨烯中的电子 - 声子耦合现象提供了重要见解,并为探索在光激发可诱导有序状态和相变的材料中的非平衡声子修饰奠定了基础。