Light Scattering From Micrometric Mineral Dust and Aggregate Particles : Effects of Structure and Shape Applied to Paleoclimate Studies (Springer Theses) (1st ed. 2020. 2021. xiv, 142 S. XIV, 142 p. 62 illus., 11 illus. in co)

201.41 SGD
会員価格
181.27

Product Description

Light scattering from particles in the nanometric and micrometric size range is relevant in several research fields, such as aerosol science and nanotechnology. In many applications, the description of the optical properties of non-spherical, inhomogeneous particles is still inadequate or requires demanding numerical calculations. Lorenz-Mie scattering and effective medium approximations represent currently the main theoretical tools to model such particles, but their effectiveness has been recently called into question.
This work examines how the morphology of a particle affects its scattering parameters from an experimental standpoint, supporting findings with extensive simulations. The dust content of Antarctic, Greenlandic, and Alpine ice cores is analysed with a particle-by-particle approach. Moreover, a study on colloidal aggregates shows that correlations among the fields radiated by primary particles are responsible for the poor agreement of effective medium approximations with experimental results. On the theoretical side, an interpretation in terms of the structure factor is given, which satisfactorily describes the data. The insights of this thesis are relevant for quantifying the contribution of mineral dust to the radiative energy balance of the Earth.
Introduction.- Scattering Fundamentals.- Scattering Models.- Mineral Dust.- Fractal Aggregates.- Conclusions.

Available to Order

Usually dispatches within 3-4 weeks

While every attempt has been made to ensure stock availability, occasionally we may run out of stock at our stores.

ご注文金額 50.00 SGD以上で国内送料無料

Discount is applied at checkout.

Recently Viewed Items

Related Products