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New results on the thermal sensitivity of bulk and surface modes of gallium orthophosphate GaPO/sub 4/

机译:正磷酸镓GaPO / sub 4 /的体模和表面模热敏感性的新结果

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Gallium orthophosphate (GaPO/sub 4/) is a piezoelectric crystal with the same class of symmetry as quartz, exhibiting higher electromechanical coupling factors for both bulk and surface waves. In this paper the results obtained for velocity measurements of bulk modes of GaPO/sub 4/ at low temperatures (from 4 K to 273 K) using the pulse-echo technique are presented. A set of elastic constants is derived together with their temperature coefficients, and a comparison is made with recent values proposed by Krempl et al. GaPO/sub 4/ already appears as an acoustic material with an exceptional temperature stability, superior to quartz. In parallel, results on the thermal sensitivity of Rayleigh surface waves on GaPO/sub 4/ are presented. A temperature-compensated cut at 75/spl deg/C has been found on a Z-cut plate exhibiting a parabolic frequency-temperature dependance with a 2nd order temperature coefficient of about 25/spl times/10/sup -9/ K/sup -2/, better than the conventional (ST, X) SAW cut of quartz.
机译:正磷酸镓(GaPO / sub 4 /)是一种压电晶体,具有与石英相同的对称性,对体波和表面波均表现出较高的机电耦合系数。在本文中,介绍了使用脉冲回波技术在低温(4 K至273 K)下测量GaPO / sub 4 /本体模式的速度的结果。导出了一组弹性常数及其温度系数,并与Krempl等人提出的最新值进行了比较。 GaPO / sub 4 /已经作为一种声学材料出现,具有出色的温度稳定性,优于石英。平行地,给出了关于GaPO / sub 4 /上的瑞利表面波的热灵敏度的结果。在Z形切割板上发现了75 / spl deg / C的温度补偿切割,该切割具有抛物线频率-温度依赖性,其二阶温度系数约为25 / spl乘以/ 10 / sup -9 / K / sup -2 /,比传统的(ST,X)SAW石英切割好。

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