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Characterization of Swept Synthetic High Quality Quartz Crystal

机译:扫扫合成高质量石英晶体的特征

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The synthetic quartz crystal is widely utilized in electronic and optical components due to its high frequency and temperature stability, good dielectric properties, low thermal coefficient of linear expansion, and wide range of optical transparency. However, radiation effects due to cosmic rays are responsible for a frequency shift for quartz oscillators in space systems, which impair their performance. Sweeping quartz at high electric field is a well-established method for improving device performance in a radiation environment. The present paper focuses on the voltage current characteristic of swept quartz. First, the sweeping conduction mechanism is ionic conduction. Second, as the voltage increases, the current increases first, then decreases, and then increases. ICP-AES results indicated that the sweeping process make Na~+ a oriented locomotion. Third, the etch channel tensity is obviously reduced to less than 3/cm~3, which is a very promising result for space applications. Moreover, the radiation resistance properties are improved after electrical sweeping.
机译:由于其高频和温度稳定性,良好的介电性能,线性膨胀系数低,光透明度范围广,光学透明度低,可通过其高频和温度稳定性,良好的热度系数,光学透明度的低热量计,以及光学透明度的低热量系数而广泛用于电子和光学元件中。然而,由于宇宙射线引起的辐射效应负责空间系统中石英振荡器的频移,这损害了它们的性能。高电场的扫地石英是一种熟悉的方法,用于提高辐射环境中的装置性能。本文侧重于扫掠石英的电压电流特性。首先,清扫传导机制是离子传导。其次,随着电压的增加,电流首先增加,然后降低,然后增加。 ICP-AES结果表明,扫地过程使Na〜+面向运动的运动。第三,蚀刻通道尖锐明显减少到小于3 / cm〜3,这是空间应用的非常有前途的结果。此外,在电扫描后,辐射抗性特性得到改善。

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