TY - JOUR
T1 - High-tone bulk acoustic resonators on sapphire, crystal quartz, fused silica, and silicon substrates
AU - Zhang, Hao
AU - Pang, Wei
AU - Yu, Hongyu
AU - Kim, Eun Sok
PY - 2006
Y1 - 2006
N2 - High-tone bulk acoustic resonators (HBARs) have been fabricated on four types of substrates: c-axis sapphire, AT-cut crystal quartz, fused silica, and (100) single crystal silicon. Quality factors of the HBARs on the four substrates have been compared. Temperature effect on the Q and resonant frequency of the four types of HBARs has been investigated. This paper reports that acoustic absorption in fused silica decreases with increased temperature. Acoustic absorptions in the other three substrates increase with increased temperature. Also, temperature coefficients of frequency of HBARs on sapphire, crystal quartz, fused silica, and silicon have been investigated. Finally, acoustic velocities in the four substrates have been extracted by measuring the frequency difference between two successive resonances of the HEAR on the corresponding substrate, and their dependences on temperature have been investigated.
AB - High-tone bulk acoustic resonators (HBARs) have been fabricated on four types of substrates: c-axis sapphire, AT-cut crystal quartz, fused silica, and (100) single crystal silicon. Quality factors of the HBARs on the four substrates have been compared. Temperature effect on the Q and resonant frequency of the four types of HBARs has been investigated. This paper reports that acoustic absorption in fused silica decreases with increased temperature. Acoustic absorptions in the other three substrates increase with increased temperature. Also, temperature coefficients of frequency of HBARs on sapphire, crystal quartz, fused silica, and silicon have been investigated. Finally, acoustic velocities in the four substrates have been extracted by measuring the frequency difference between two successive resonances of the HEAR on the corresponding substrate, and their dependences on temperature have been investigated.
UR - https://www.webofscience.com/wos/woscc/full-record/WOS:000238730000122
UR - https://openalex.org/W2060415336
UR - https://www.scopus.com/pages/publications/33745697480
U2 - 10.1063/1.2209029
DO - 10.1063/1.2209029
M3 - Journal Article
SN - 0021-8979
VL - 99
JO - Journal of Applied Physics
JF - Journal of Applied Physics
IS - 12
M1 - 124911
ER -