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Absorption ?ngstr?m coefficient, brown carbon, and aerosols: basic concepts, bulk matter, and spherical particles

机译:吸收?Ngstr?M系数,棕色碳和气溶胶:基本概念,散装物和球形颗粒

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The concept of wavelength-dependent absorption ?ngstr?m coefficients (AACs) is discussed and clarified for both single and two-wavelengths AACs and guidance for their implementation with noisy absorption spectra is provided. This discussion is followed by application of the concept to models for brown carbon bulk absorption spectra including the damped simple harmonic oscillator model, its Lorentzian approximation, and the band-gap model with and without Urbach tail. We show that the band-gap model with Urbach tail always has an unphysical discontinuity in the first derivative of the AAC at the band-gap – Urbach-tail matching wavelength. Complex refractive indices obtained from the bulk damped simple harmonic oscillator model are used to calculate absorption spectra for spherical particles, followed by a discussion of their features. For bulk material and small particles, this model predicts a monotonic decrease of the AAC with wavelength well above the resonance wavelength; the model predicts a monotonic increase for large particles.
机译:对于单个和双波长AAC而言,讨论并澄清了波长依赖性吸收的概念,并阐明了单个和双波长AAC,并且提供了利用噪声吸收光谱的实施指导。随后,该讨论将该概念应用于棕色碳批量吸收光谱的模型,包括阻尼简单的谐波振荡器模型,其Lorentzian近似和带隙模型,带有urbach尾巴。我们表明,带有Urbach尾巴的带隙模型总是在带隙的AAC的第一导数上具有不透露的不连续性 - Urbach尾匹配波长。从批量阻尼简单的谐波振荡器模型获得的复杂折射率用于计算球形颗粒的吸收光谱,然后讨论其特征。对于散装材料和小颗粒,该模型预测AAC的单调减少,波长高于谐振波长;该模型预测大粒子的单调增加。

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