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Excitation nonlinearities in emission reabsorption laser-induced fluorescence techniques

机译:发射重吸收激光诱导荧光技术中的激发非线性

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摘要

The effects of the nonlinear behavior of fluorescent intensity with excitation intensity on emission reabsorption laser-induced fluorescence (ERLIF) are investigated. Excitation nonlinearities arise mainly as a consequence of the depletion of the ground-state population stemming from the finite lifetime of molecules in the excited state. These nonlinearities hinder proper suppression of the excitation intensity information in the fluorescence ratio, degrading measurement accuracy. A method for minimizing this effect is presented. This method is based on the approximation of the fluorescence intensity nonlinearities by a power law. Elevating the two-dimensional fluorescent intensity maps to the appropriate exponent allows for proper suppression of excitation intensity in the fluorescence ratio. An overview of the principles and constitutive equations behind ERLIF film-thickness measurements, along with a characterization of the fluorescence's nonlinear behavior, is presented. The power law approximation and processing scheme used to mitigate this behavior are introduced. Experimental proof of the validity of the approximation and processing scheme is provided.
机译:研究了荧光强度与激发强度的非线性行为对发射重吸收激光诱导荧光(ERLIF)的影响。激发非线性主要是由于激发态分子的有限寿命所引起的基态种群耗尽所致。这些非线性阻碍了荧光比中激发强度信息的适当抑制,从而降低了测量精度。提出了一种最小化这种影响的方法。该方法基于幂律对荧光强度非线性的近似。将二维荧光强度图升高到适当的指数可以适当抑制荧光比中的激发强度。概述了ERLIF膜厚度测量背后的原理和本构方程,并描述了荧光的非线性行为。介绍了用于减轻这种行为的幂律近似和处理方案。提供了近似和处理方案有效性的实验证明。

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