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Theoretical studies on leaky-SAW properties influenced by layers on anisotropic piezoelectric crystals

机译:各向异性压电晶体上的层对渗漏声表面波特性影响的理论研究

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Theoretical studies on the behavior of leaky-SAW (LSAW) properties in layered structures were performed. For these calculations rotYX LiTaO/sub 3/ and rotYX LiNbO/sub 3/ LSAW crystal cuts were used, assuming different layer materials. For LSAWs both the velocity and the inherent loss due to bulk wave emission into the substrate are strongly influenced by distinct layer parameters. As a result, these layer properties like elastic constants or thickness have shown a strong influence on the crystal cut angle of minimum LSAW loss. Moreover, for soft and stiff layer materials, a different shift of the LSAW loss minimum can occur. Therefore, using double-layer structures, the shift of the LSAW loss minimum can be influenced by appropriate chosen layers and ratios.
机译:对层状结构中渗漏声表面波(LSAW)特性的行为进行了理论研究。对于这些计算,假设层材料不同,使用rotYX LiTaO / sub 3 /和rotYX LiNbO / sub 3 / LSAW晶体切割。对于LSAW,由于大量波发射到基板中而导致的速度和固有损耗都受到不同层参数的强烈影响。结果,这些层性质如弹性常数或厚度已显示出对最小LSAW损耗的晶体切割角的强​​烈影响。此外,对于软质和硬质层材料,LSAW损耗最小值的变化可能发生。因此,使用双层结构,最小LSAW损耗的偏移会受到适当选择的层数和比率的影响。

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