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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Absorption Spectrometry by Narrowband Light in Optically Saturated and Optically Pumped Collision and Doppler Broadened Gaseous Media Under Arbitrary Optical Thickness Conditions
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Absorption Spectrometry by Narrowband Light in Optically Saturated and Optically Pumped Collision and Doppler Broadened Gaseous Media Under Arbitrary Optical Thickness Conditions

机译:任意光学厚度条件下光饱和和光泵浦碰撞和多普勒增宽气态介质中窄带光的吸收光谱

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摘要

This work examines absorption spectrometry by narrowband light in gaseous media with arbitrary optical thickness when the light induces optical saturation or optical pumping. Two quantities are defined: the observed absorbance, A_(obs), and the true absorbance, A_(true). The former is the absorbance that is measured under the existing conditions, whereas the latter represents the absorbance one would measure if the light acted solely as a probe of the populations of the various levels, and it is therefore directly proportional to the concentration or density of absorbers. A general integral equation for the propagation of light in media of arbitrary optical thickness in which the light influences the populations of the levels involved is derived. This expression is transcendental in the observed absorbance and cannot be solved analytically. It is shown that an analytical expression can be derived by investigating the inverse relationship, i.e., A_(true) velence f(A_(obs)). Inasmuch as collision and Doppler broadened media react differently to optical saturation, they are considered separately. It is shown that a nonlinear response results if the medium is optically saturated (or pumped) and not optically thin. Expressions for the error introduced if the technique of standard additions is uncritically applied to such a system are derived.
机译:当光引起光学饱和或光泵浦时,这项工作研究了在具有任意光学厚度的气态介质中通过窄带光进行的吸收光谱。定义了两个量:观察到的吸光度A_(obs)和真实吸光度A_(true)。前者是在现有条件下测得的吸光度,而后者代表了一种吸光度,即光是否仅充当各种级别的种群的探针,因此它与吸光度的浓度或密度成正比。吸收体。推导了用于在任意光学厚度的介质中传播的光的一般积分方程,其中,光会影响所涉及的能级。该表达在观察到的吸光度方面是先验的,并且不能解析地解决。结果表明,可以通过研究反关系即A_(真)速度f(A_(obs))来导出解析表达式。由于碰撞和多普勒增宽的介质对光学饱和的反应不同,因此将它们分开考虑。结果表明,如果介质是光学饱和的(或泵浦的)而不是光学稀薄的,则会导致非线性响应。如果标准加法技术非严格地应用于这样的系统,则会引入错误表示。

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