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首页> 外文期刊>Applied optics >PROBING AND MONITORING AEROSOL AND ATMOSPHERIC CLOUDS WITH AN ELECTRO-OPTIC OSCILLATOR
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PROBING AND MONITORING AEROSOL AND ATMOSPHERIC CLOUDS WITH AN ELECTRO-OPTIC OSCILLATOR

机译:用光电振荡器探测和监测气溶胶和大气层

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Monitoring, probing, and sensing characteristics of aerosol clouds is difficult and complicated. Probing the characteristics of aerosols is most useful in the chemical and microelectronic industry for processing control of aerosols and emulsion, decreasing bit error rate in adaptive optical communication systems, and in acquiring data for atmospheric science and environment quality. We present a new mathematical and optical engineering model for monitoring characteristics of aerosol clouds. The model includes the temporal transfer function of aerosol clouds as a variable parameter in an electro-optic oscillator. The frequency of the oscillator changes according to changes in the characteristics of the clouds (density, size distribution, physical thickness, the medium and the particulate refractive indices, and spatial distribution). It is possible to measure only one free characteristic at a given time. An example of a practical system for monitoring the density of aerosol clouds is given. The frequency of the oscillator changes from 1.25 to 0.43 MHz for changes in aerosol density ti om 2000 to 3000 particulates cm(-3). The advantages of this new method compared with the transmissometer methods are (a) no necessity for line-of-sight measurement geometry, (b) accurate measurement of high optical thickness media is possible, (c) under certain conditions measurements can include characteristics of aerosol clouds related to light scatter that cannot be or are difficult to measure with a transmissometer, and (d) the cloud bandwidth for free space optical communication is directly measurable. (C) 1996 Optical Society of America [References: 14]
机译:监测,探测和感测气溶胶云的特性既困难又复杂。在化学和微电子工业中,探查气溶胶的特性对于处理气溶胶和乳剂,降低自适应光通信系统中的误码率以及获取大气科学和环境质量的数据非常有用。我们提出了一种新的数学和光学工程模型,用于监测气溶胶云的特征。该模型将气溶胶云的时间传递函数作为电光振荡器中的可变参数。振荡器的频率根据云的特性(密度,尺寸分布,物理厚度,介质和颗粒的折射率以及空间分布)的变化而变化。在给定的时间只能测量一个自由特性。给出了一个用于监测气溶胶云密度的实用系统的示例。对于2000到3000微粒cm(-3)的气溶胶密度变化,振荡器的频率从1.25变为0.43 MHz。与透射计方法相比,这种新方法的优点是:(a)无需视线测量几何形状;(b)可以精确测量高光学厚度介质;(c​​)在某些条件下,测量可以包括以下特征:与光散射相关的气溶胶云,无法使用透射仪测量或难以测量,并且(d)用于自由空间光通信的云带宽可直接测量。 (C)1996年美国眼镜学会[参考文献:14]

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