Title :
Gigahertz acoustic wave velocity measurement in GaN single crystals considering acousto-electric effect
Author :
Ichihashi, Hayato ; Yanagitani, Takahiko ; Takayanagi, Shinji ; Kawabe, Masahiko ; Matsukawa, Mami
Author_Institution :
Lab. of Ultrasonic Electron., Doshisha Univ., Kyotanabe, Japan
Abstract :
The resistivity¿frequency characteristics of longitudinal wave velocities propagating parallel to the c-axis in a GaN single crystal were theoretically estimated by considering the piezoelectric acousto-electric effect. The temperature and frequency dependences of longitudinal and shear wave velocities in conductive and semiconductive GaN single-crystal samples were experimentally investigated by Brillouin scattering. The temperature dependence of longitudinal and shear wave velocities had a linear tendency in the conductive sample, whereas in the semiconductive sample, those had a similar tendency to the predicted velocity changes resulting from the piezoelectric stiffening effect. However, the temperature dependence of shear wave velocity, which does not possess piezoelectric coupling, had a tendency similar to that of the longitudinal wave in the semiconductive sample, unexpectedly. The frequency dependence of longitudinal wave velocities in the semiconductive sample had a tendency similar to the predicted velocity changes resulting from the piezoelectric stiffening effect.
Keywords :
Brillouin spectra; III-V semiconductors; acoustic wave velocity; acoustoelectric effects; elastic waves; gallium compounds; piezoelectricity; piezoresistance; wide band gap semiconductors; Brillouin scattering; GaN; frequency dependence; gigahertz acoustic wave velocity measurement; piezoelectric acoustoelectric effect; piezoelectric stiffening effect; resistivity-frequency characteristics; semiconducting gallium nitride single crystals; shear wave velocity; temperature dependence; wave velocity propagation; Acoustic measurements; Acoustic waves; Conductivity; Crystals; Measurement by laser beam; Temperature dependence; Temperature measurement;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2014.3037