Foerster Michael, Statuto Nahuel, Casals Blai, Hernández-Mínguez Alberto, Finizio Simone, Mandziak Ania, Aballe Lucia, Hernàndez Ferràs Joan Manel, Macià Ferran
Experiments Divison, ALBA Synchrotron, Carrer de la Llum 2-26, Cerdanyola del Valles, 08290 Barcelona, Spain.
Department of Condensed Matter Physics, University of Barcelona, 08028 Barcelona, Spain.
J Synchrotron Radiat. 2019 Jan 1;26(Pt 1):184-193. doi: 10.1107/S1600577518015370.
The quantification of surface acoustic waves (SAWs) in LiNbO piezoelectric crystals by stroboscopic X-ray photoemission electron microscopy (XPEEM), with a temporal smearing below 80 ps and a spatial resolution below 100 nm, is reported. The contrast mechanism is the varying piezoelectric surface potential associated with the SAW phase. Thus, kinetic energy spectra of photoemitted secondary electrons measure directly the SAW electrical amplitude and allow for the quantification of the associated strain. The stroboscopic imaging combined with a deliberate detuning allows resolving and quantifying the respective standing and propagating components of SAWs from a superposition of waves. Furthermore, standing-wave components can also be imaged by low-energy electron microscopy (LEEM). Our method opens the door to studies that quantitatively correlate SAWs excitation with a variety of sample electronic, magnetic and chemical properties.
报道了通过频闪X射线光电子显微镜(XPEEM)对LiNbO压电晶体中的表面声波(SAW)进行量化,其时间拖尾低于80皮秒,空间分辨率低于100纳米。对比度机制是与SAW相位相关的变化的压电表面电位。因此,光发射二次电子的动能谱直接测量SAW的电振幅,并允许对相关应变进行量化。频闪成像与故意失谐相结合,可以从波的叠加中分辨和量化SAW各自的驻波和传播分量。此外,驻波分量也可以通过低能电子显微镜(LEEM)成像。我们的方法为将SAW激发与各种样品的电子、磁性和化学性质进行定量关联的研究打开了大门。