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Assessing the accuracy of complex refractive index retrievals from single aerosol particle cavity ring-down spectroscopy

机译:评估单个气溶胶颗粒瓣膜瓣膜下斜波光谱复合折射率检索的准确性

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摘要

Cavity ring-down spectroscopy (CRDS) of single, optically manipulated aerosol particles affords quantitative retrieval of refractive indices for particles of fixed or evolving composition with high precision. Here, we quantify the accuracy with which refractive index determinations can be made by CRDS for single particles confined within the core of a Bessel laser beam and how that accuracy is degraded as the particle size is progressively reduced from the coarse mode (>1m radius) to the accumulation mode (<500nm radius) regime. We apply generalized Lorenz-Mie theory to the intra-cavity standing wave to explore the effect of particle absorption on the distribution of extinction cross section determinations resulting from stochastic particle motion in the Bessel beam trap. The analysis provides an assessment of the accuracy with which the real, n, and imaginary, , components of the refractive index can be determined for a single aerosol particle.Published with license by American Association for Aerosol Research
机译:单个光学操纵的气溶胶颗粒的腔响铃光谱(CRD)为具有高精度的固定或演化组合物的颗粒提供定量检索折射率。在这里,我们量化了折射率测定可以通过用于底座内芯的单个颗粒的CRD来进行折射率测定的精度以及如何从粗略模式(> 1M半径)逐渐降低时精确度降低。到累积模式(<500nm半径)制度。我们将广义的Lorenz-Mie理论应用于腔内常设波,探讨粒子吸收对贝塞尔束阱中随机粒子运动引起的消光横截面测定分布的影响。分析提供了对真实,n和虚构的准确性的评估,可以针对单个气溶胶颗粒确定折射率的组分。由美国气溶胶研究协会发出许可证

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