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Real-time Simulations and Experiments on Surface Acoustic Wave Scattering in Periodic Microstructures
Istv´an A. Veres,1, Dieter M. Profunser,2
Oliver B. Wright,2 Osamu Matsuda,2 and Brian Culshaw1
1Department of Electronic and Electrical Engineering, Centre for Ultrasonic Engineering,
University of Strathclyde, Glasgow G1 1XW, United Kingdom
2Department of Applied Physics, Graduate School of Engineering,
Hokkaido University, Sapporo, 060-8628, Japan
(Received April 8, 2010)
Surface acoustic wave scattering in periodically microstructured surfaces is investigated numerically and experimentally. We perform the simulations by a real-time finite element technique and experiments by ultrashort pulsed optical excitation and interferometric detection. Good agreement is obtained between simulation and experiment. Our results clearly show the opening of phononic stop bands of the excited Rayleigh-like waves at the Brillouin
zone boundary. In addition, we investigate the influence of the grating thickness by numerical simulations. Our results show the strong influence of the grating thickness on the position and width of the phononic stop bands.