Parygin VN, Vershoubskiy AV, Mozhaev VG, Weihnacht M
Faculty of Physics, Moscow State University, Russia.
Ultrasonics. 2000 Mar;38(1-8):594-7. doi: 10.1016/s0041-624x(99)00144-4.
The propagation and acousto-optic interaction of Lamb modes in an anisotropic plate of tellurium dioxide (TeO2) are studied numerically and analytically. In the case of a Y-cut X-propagating TeO2 plate, the very high elastic anisotropy of the crystal greatly modifies the dispersion curves, giving rise to their multiple oscillations. The existence ranges of backward Lamb modes increase with the mode order contrary to the case of isotropic plates. The quasi-collinear light scattering by Lamb waves is considered. Owing to the structure of Lamb wave field, a simultaneous light diffraction at two different optical frequencies can take place while Lamb waves are excited only at the single frequency. It is demonstrated with the Z-cut (110)-propagating plate that a small change in the acoustic frequency can result in a significant shift in the frequency of the scattered light.
对二氧化碲(TeO₂)各向异性板中兰姆波的传播和声光相互作用进行了数值和解析研究。对于Y切割、X传播的TeO₂板,晶体极高的弹性各向异性极大地改变了色散曲线,使其产生多次振荡。与各向同性板的情况相反,反向兰姆波的存在范围随模式阶数增加。考虑了兰姆波的准共线光散射。由于兰姆波场的结构,在仅以单一频率激发兰姆波时,可能会在两个不同光学频率处同时发生光衍射。以Z切割(110)传播板为例表明,声频的微小变化会导致散射光频率发生显著偏移。