Storeck G, Horstmann J G, Diekmann T, Vogelgesang S, von Witte G, Yalunin S V, Rossnagel K, Ropers C
4th Physical Institute, Solids and Nanostructures, University of Göttingen, 37077 Göttingen, Germany.
Struct Dyn. 2020 Jun 22;7(3):034304. doi: 10.1063/4.0000018. eCollection 2020 May.
We study the non-equilibrium structural dynamics of the incommensurate and nearly commensurate charge-density wave (CDW) phases in 1- . Employing ultrafast low-energy electron diffraction with 1 ps temporal resolution, we investigate the ultrafast quench and recovery of the CDW-coupled periodic lattice distortion (PLD). Sequential structural relaxation processes are observed by tracking the intensities of main lattice as well as satellite diffraction peaks and the diffuse scattering background. Comparing distinct groups of diffraction peaks, we disentangle the ultrafast quench of the PLD amplitude from phonon-related reductions of the diffraction intensity. Fluence-dependent relaxation cycles reveal a long-lived partial suppression of the order parameter for up to 60 ps, far outlasting the initial amplitude recovery and electron-phonon scattering times. This delayed return to a quasi-thermal level is controlled by lattice thermalization and coincides with the population of zone-center acoustic modes, as evidenced by a structured diffuse background. The long-lived non-equilibrium order parameter suppression suggests hot populations of CDW-coupled lattice modes. Finally, a broadening of the superlattice peaks is observed at high fluences, pointing to a non-linear generation of phase fluctuations.
我们研究了1- 中非公度和近公度电荷密度波(CDW)相的非平衡结构动力学。利用具有1皮秒时间分辨率的超快低能电子衍射,我们研究了CDW耦合的周期性晶格畸变(PLD)的超快猝灭和恢复。通过跟踪主晶格以及卫星衍射峰的强度和漫散射背景,观察到了连续的结构弛豫过程。通过比较不同组的衍射峰,我们将PLD振幅的超快猝灭与衍射强度的声子相关降低区分开来。通量依赖的弛豫循环揭示了序参量长达60皮秒的长期部分抑制,远远超过了初始振幅恢复和电子-声子散射时间。这种延迟回到准热水平由晶格热化控制,并且与区中心声学模式的填充一致,这由结构化的漫散射背景证明。长期的非平衡序参量抑制表明存在CDW耦合晶格模式的热分布。最后,在高通量下观察到超晶格峰变宽,这表明存在相涨落的非线性产生。