New researches on low noise signal generation based upon electronic devices with strong surface sensitivity

Dai Enguang
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引用次数: 1

Abstract

The surface molecular motion phase noise existed in electronic components with strong surface sensitivity has been extensively analyzed both from theory and experiments. To select a suitable device with remarkable surface sensitivity is very important for the efficiently research. In this paper, two-port and high Q-value SAW resonators were adopted. The phase noise has been studied from the point of view of stochastic process resulting from gas molecular adsorption and desorption. Experimental results have shown that some organic vapors can reduce the flicker noise (1/f) and random walk(1/f/sup 2/) noise. Analysis has been made that these effects are not from the e-value increment, but from the changing of dynamic rate of adsorption and desorption. Research on gas motion above the device substrate might explain some phenomenon difficulty explained by the model based only upon substrate itself.
基于高表面灵敏度电子器件的低噪声信号产生新研究
本文从理论和实验两方面对具有强表面灵敏度的电子元件中存在的表面分子运动相位噪声进行了广泛的分析。选择合适的具有良好表面灵敏度的器件对高效地进行研究具有重要意义。本文采用双端口高q值SAW谐振器。从气体分子吸附和解吸随机过程的角度研究了相噪声。实验结果表明,一些有机蒸汽可以降低闪烁噪声(1/f)和随机游动噪声(1/f/sup 2/)。分析表明,这些影响不是由e值的增加引起的,而是由吸附和解吸动态速率的变化引起的。研究器件衬底上的气体运动可以解释一些仅基于衬底本身的模型难以解释的现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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