Ukleev Victor, Leroy Ludmila, Mincigrucci Riccardo, Deangelis Dario, Fainozzi Danny, Khatu Nupur Ninad, Paltanin Ettore, Foglia Laura, Bencivenga Filippo, Luo Chen, Ruske Florian, Radu Florin, Svetina Cristian, Staub Urs
Helmholtz-Zentrum Berlin für Materialien und Energie, D-12489 Berlin, Germany.
Swiss Light Source, Paul Scherrer Institute, 5232 Villigen PSI, Switzerland.
Struct Dyn. 2024 Mar 6;11(2):025101. doi: 10.1063/4.0000223. eCollection 2024 Mar.
Surface acoustic waves (SAWs) are excited by femtosecond extreme ultraviolet (EUV) transient gratings (TGs) in a room-temperature ferrimagnetic DyCo alloy. TGs are generated by crossing a pair of EUV pulses from a free electron laser with the wavelength of 20.8 nm matching the Co -edge, resulting in a SAW wavelength of Λ = 44 nm. Using the pump-probe transient grating scheme in reflection geometry, the excited SAWs could be followed in the time range of -10 to 100 ps in the thin film. Coherent generation of TGs by ultrafast EUV pulses allows to excite SAW in any material and to investigate their couplings to other dynamics, such as spin waves and orbital dynamics. In contrast, we encountered challenges in detecting electronic and magnetic signals, potentially due to the dominance of the larger SAW signal and the weakened reflection signal from underlying layers. A potential solution for the latter challenge involves employing soft x-ray probes, albeit introducing additional complexities associated with the required grazing incidence geometry.
表面声波(SAWs)由室温铁磁DyCo合金中的飞秒极紫外(EUV)瞬态光栅(TGs)激发。TGs通过使来自自由电子激光器的一对波长为20.8nm且与Co边匹配的EUV脉冲交叉产生,从而得到SAW波长Λ = 44nm。利用反射几何中的泵浦 - 探测瞬态光栅方案,在薄膜中可以在 - 10到100 ps的时间范围内跟踪激发的SAWs。超快EUV脉冲对TGs的相干产生使得能够在任何材料中激发SAW,并研究它们与其他动力学(如自旋波和轨道动力学)的耦合。相比之下,我们在检测电子和磁信号时遇到了挑战,这可能是由于较大的SAW信号占主导以及来自下层的反射信号减弱所致。针对后一个挑战的一个潜在解决方案是采用软X射线探针,尽管这会引入与所需掠入射几何相关的额外复杂性。