Title :
Force-frequency effect of Y-cut langanite and Y-cut langatate
Author :
Kim, Yoonkee ; Ballato, Arthur
Author_Institution :
Res. Dev. & Eng. Center, US Army Commun.-Electron. Command, New Jersey, USA
Abstract :
Most recently, langasite and its isomorphs (LGX) have been advanced as potential substitutes for quartz, owing to their extremely high-quality (Q) factors. At least twice higher Q value of LGX than that of quartz has been reported. High Q translates into potentially greater stability. In order to make such materials practical, the environmental sensitivities must be addressed. One of such sensitivities is the force-frequency effect, which relates the sensitiveness of a resonator to shock and vibration via the third-order (non-Hookean) elastic constants. In this paper, we report measured force-frequency coefficients of a Y-cut langanite (LGN) resonator and a Y-cut langatate (LGT) resonator as a function of the azimuthal angle, which is the angle between the crystalline X-axis of a resonator plate and the direction of in-plane diametric force applied to the periphery of the resonator. It was found that the LGN and the LGT behave like AT-cut quartz in the polarity of the frequency changes and the existence of zero-coefficient angle. The maximum magnitudes of the coefficients of the LGN and the LGT are five and seven times smaller than that of stress-compensated cut (SC-cut) quartz, respectively (or, 7 and 10 times smaller comparing to AT-cut quartz). The coefficients of planar-stress, which represent the superposition of a continuous distribution of periphery stresses, also were obtained as 0.52/spl times/10/sup -15/ m/spl middot/s/N and 0.38/spl times/10/sup -15/ m/spl middot/s/N for the LGN and the LGT, respectively.
Keywords :
Q-factor; crystal resonators; elastic constants; gallium compounds; internal stresses; lanthanum compounds; quartz; La/sub 3/Ga/sub 3.5/Ta/sub 0.5/O/sub 14/; La/sub 3/Ga/sub 3.5/Ta/sub 0.5/O/sub 14/ langatate; La/sub 3/Ga/sub 5.5/Nb/sub 0.5/O/sub 14/; La/sub 3/Ga/sub 5.5/Nb/sub 0.5/O/sub 14/ langanite; Y-cut langanite; Y-cut langatate; azimuthal angle; force frequency coefficients; force frequency effect; in plane diametric force; isomorphs; nonHookean elastic constants; planar stress coefficients; quartz; stability; stress compensated cut; third order elastic constants; zero coefficient angle; Acoustic waves; Azimuthal angle; Crystallization; Crystals; Electric shock; Force measurement; Frequency; Stability; Thermal force; Thermal stresses;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2003.1256308