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Porosity Dependence of the Velocity of Surface and Bulk Acoustic Waves in Porous Silicon Carbide Films

机译:多孔碳化硅膜中表面和散装声波速度的孔隙率依赖性

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Brillouin light scattering spectroscopy was used to probe porous silicon carbide films formed from p-type 6H crystalline silicon carbide. The porosities of the films ranged from 30% to 58%. Surface and bulk acoustic wave velocities were measured and compared with those calculated from the Mori-Tanaka acoustic effective medium model. Qualitative agreement is obtained between the experimentally determined velocities and those predicted by Mori-Tanaka acoustic effective medium models with spherical pores and, in the case of surface acoustic waves, also with prolate spheroidal pores with shape factor equal to 0.2. The model demonstrates the importance of morphology in determining the behavior of acoustic waves in a porous material.
机译:布里渊光散射光谱用于探测由p型6H晶体碳化硅形成的多孔碳化硅膜。电影的孔隙率范围为30%至58%。测量表面和散装声波速度,并与由森达纳卡声学有效介质模型计算的那些进行比较。在实验确定的速度和由森腾声学有效介质模型预测的那些具有球形孔隙的那些之间获得定性协议,并且在表面声波的情况下,也具有相当于0.2的形状因子的环形球孔。该模型展示了形态学在确定多孔材料中的声波的行为方面的重要性。

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