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HIGH-TEMPERATURE ACOUSTIC LOSS IN THICKNESS-SHEAR MODE QUARTZ RESONATORS

机译:厚度剪切模式高温声损失石英谐振器

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Sensor and other applications are causing an increased use of quartz resonators at high-temperatures. The Q of a quartz resonator is limited by a number of different mechanisms including the properties of the quartz itself. The Q of all quartz resonators is limited by interaction between the active mode and the thermal phonon bath. Above cryogenic temperatures this intrinsic thermal loss is nearly independent of temperature. Defect and impurities in the quartz also limit the Q of a crystal. At high temperatures alkalis thermally escape from their original interstitial site adjacent to the substitutional aluminum drift randomly along the open Z-axis channel. The release and drift of these ions causes a thermally activated loss which increases rapidly with temperature. In swept quartz the alkalis have been replaced by hydrogen which bonds to an oxygen atom adjacent to the aluminum. The free-ion loss is not present in these swept samples. Instead, the Al-OH center produces a traditional loss peak at about 600 K. We have compared the lithium and sodium free ion-loss and the Al-OH loss in AT-cut, BT-cut, and SC-cut resonator blanks prepared from the same bar of quartz. For Li-compensated samples the thermally-activated free-ion loss is largest in the AT-cut sample and smallest in the SC-cut with the BT intermediate. The AT-cut Na-compensated blank showed the expected free-ion loss that was slightly smaller than that seen in the Li-compensated blank. The Na-compensated SC and BT-cut samples had an unusual loss that increased with T above about 400 K. The 600 K Al-OH peak in the H-compensated SC-cut blank was about 1/3~(rd) the strength of the peak in the AT-cut blank. The H-compensated BT-cut blanks behaved strangely and further investigation is needed.
机译:传感器和其他应用导致在高温下增加石英谐振器的使用。石英谐振器的Q受许多不同机制的限制,包括石英本身的性质。所有石英谐振器的Q通过主动模式和热敏浴之间的相互作用有限。以上低温温度这种内在的热损失几乎与温度无关。石英中的缺陷和杂质也限制了晶体的Q。在高温下,碱性从其原始间隙位点热逸出,其与换铝通道随机漂移到替换铝中。这些离子的释放和漂移导致热敏损耗随温度迅速增加。在扫描石英中,碱已被氢气代替,该氢粘合到与铝相邻的氧原子中。在这些扫描样品中不存在自由离子损失。相反,Al-OH中心在约600k中产生传统的损失峰。我们已经将锂和游离离子损失和Al-OH损失进行了加工,Bt-Cut和Sc-Cut谐振器坯料的损失比较来自Quartz的同一个酒吧。对于锂补偿样品,热活化的游离离子损失是在AT切割样品中最大的最大的,并且在SC-CUT中,用BT中间体中最小。 AT-Cut Na补偿坯料显示了预期的自由离子损失,其略小于Li-Caterated坯料中所见。 Na补偿的SC和BT-Cut样品具有不寻常的损失,其T以上的T.在H级补偿的SC-Cut坯料中的600k al-OH峰值为约1/3〜(Rd)的强度在凝块空白中的峰值。 H补偿的BT切割坯料表现得很奇怪,需要进一步调查。

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