此方法对其它各向异性晶体材料的双折射率色散特性的研究同样适应。
For the study of birefringence dispersion character of other aeolotropic crystal material, this method can also be applied.
各向异性强的晶体实现负折射的入射角范围可能会很大。
For strong anisotropy crystal, the maximum incident Angle that yields the negative refraction could be very large.
在考虑晶体的压电性和各向异性基础上,从声的波动理论出发,对叉指换能器在液体-压电晶片界面上兰姆波的激发理论及其性质进行了研究。
To solve these problems, the properties of Lamb wave excited by interdigital transducer in the piezoelectric substrate covered by liquid were studied based on its piezoelectricity and anisotropy.
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