High-temperature acoustic loss in. AT-cut, BT-cut and SC-cut quartz resonators

J.J. Martin, A. R. Lopez
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引用次数: 1

Abstract

The Q of a crystal is limited by several different mechanisms including the properties of the quartz itself. In as-grown quartz at high temperatures the alkali ions associated with the substitutional aluminum thermally escape from their interstitial site and drift in the Z-axis channel. These free ions cause a thermally activated loss. In swept quartz the alkali ions have been replaced with hydrogen which bonds to one of the oxygen atoms adjacent to the aluminum. The resulting Al-OH center causes a traditional loss peak at about 600 K in 5 MHz crystals. We are in the process of comparing the Li/sup +/ and Na/sup +/ free ionloss and the Al-OH loss in AT-cut, BT-cut, and SC-cut resonators. The comparison is being made between 5 MHz 3rd blanks taken from a single bar of Toyo SQ-grade quartz that has 8-10 ppm aluminum. AT-cut and BT-cut 10 MHz 3rd crystals from single bar of Motorola quartz with 10-12 ppm aluminum are also included in the study. The original blanks were electrodiffused with the Li/sup +/, Na/sup +/ or with hydrogen to ensure presence only. one species of ion. The free-ion loss due to Li/sup +/ is consistently greater than that due to Na+. In the 5 MHz crystals the free-ion loss is greater for the AT-cuts, than for the BT-cuts, then for the SC-cuts (c-mode) for both Li/sup +/ and Na/sup +/. The expected 50% frequency-related reduction in the free-ion loss was observed for the 10 MHz BT-cut crystals. However, the reduction was significantly larger for the AT-cut 10 MHz crystals. SC-cut crystals are normally operated on the slow c-mode but can be run on the faster b-mode. Both the Li/sup +/ and Na/sup +/ free-ion loss for the b-mode appears to be nearly the same as for the c-mode. The AT-cut blank showed the largest 600 K Al-OH loss peak, the SC-cut (c-mode) was the next largest, followed by the BT-cut, and the SC-cut (b-mode) was the smallest.
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高温声损失。AT-cut, BT-cut和SC-cut石英谐振器
晶体的Q值受几种不同机制的限制,包括石英本身的性质。在高温下生长的石英中,与取代铝相关的碱离子从它们的间隙位置热逸出并在z轴通道中漂移。这些自由离子引起热活化损失。在扫过的石英中,碱离子被氢所取代,氢与靠近铝的一个氧原子结合。由此产生的Al-OH中心在5mhz晶体中约600k处产生传统的损耗峰。我们正在比较AT-cut、BT-cut和SC-cut谐振器中Li/sup +/和Na/sup +/自由离子损失和Al-OH损失。比较是在5兆赫的第3空白,从一个单独的东洋sq级石英条,有8-10 ppm的铝。at切割和bt切割10兆赫第三晶体从单条摩托罗拉石英与10-12 ppm铝也包括在研究中。原始毛坯用Li/sup +/, Na/sup +/或氢电扩散以确保只存在。一种离子。Li/sup +/导致的自由离子损失始终大于Na+。在5 MHz晶体中,at切割的自由离子损失大于bt切割,然后是sc切割(c模式),Li/sup +/和Na/sup +/。在10 MHz bt切割晶体中,自由离子损失预期减少了50%。然而,at切割的10 MHz晶体的减少幅度更大。sc切割晶体通常在慢的c模式下工作,但可以在更快的b模式下运行。b模式的Li/sup +/和Na/sup +/自由离子损失似乎与c模式几乎相同。at切割空白的600 K Al-OH损失峰最大,sc切割(c-mode)次之,bt切割次之,sc切割(b-mode)最小。
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