Mayer Elena A, Rogall Olga, Ding Anli, Nair Akash, Žukauskaitė Agnė, Pupyrev Pavel D, Lomonosov Alexey M, Mayer Andreas P
B + W Department, Offenburg University of Applied Sciences, 77652 Offenburg, Germany.
Fraunhofer Institute for Applied Solid State Physics IAF, 79108 Freiburg, Germany.
Micromachines (Basel). 2022 Oct 9;13(10):1698. doi: 10.3390/mi13101698.
The laser ultrasound (LU) technique has been used to determine dispersion curves for surface acoustic waves (SAW) propagating in AlScN/AlO systems. Polar and non-polar AlScN thin films were prepared by magnetron sputter epitaxy on AlO substrates and coated with a metal layer. SAW dispersion curves have been measured for various propagation directions on the surface. This is easily achieved in LU measurements since no additional surface structures need to be fabricated, which would be required if elastic properties are determined with the help of SAW resonators. Variation of the propagation direction allows for efficient use of the system's anisotropy when extracting information on elastic properties. This helps to overcome the complexity caused by a large number of elastic constants in the film material. An analysis of the sensitivity of the SAW phase velocities (with respect to the elastic moduli and their dependence on SAW propagation direction) reveals that the non-polar AlScN films are particularly well suited for the extraction of elastic film properties. Good agreement is found between experiment and theoretical predictions, validating LU as a non-destructive and fast technique for the determination of elastic constants of piezoelectric thin films.
激光超声(LU)技术已被用于确定在AlScN/AlO系统中传播的表面声波(SAW)的色散曲线。通过磁控溅射外延在AlO衬底上制备了极性和非极性AlScN薄膜,并涂覆了金属层。已测量了表面上各种传播方向的SAW色散曲线。这在LU测量中很容易实现,因为无需制造额外的表面结构,而如果借助SAW谐振器确定弹性特性则需要制造这些结构。传播方向的变化使得在提取弹性特性信息时能够有效利用系统的各向异性。这有助于克服薄膜材料中大量弹性常数所带来的复杂性。对SAW相速度的灵敏度分析(相对于弹性模量及其对SAW传播方向的依赖性)表明,非极性AlScN薄膜特别适合于提取弹性薄膜特性。实验与理论预测之间取得了良好的一致性,验证了LU作为一种用于确定压电薄膜弹性常数的无损且快速的技术。