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Mie-scattering formalism for spherical particles embedded in an absorbing medium

机译:嵌入吸收介质中的球形颗粒的米氏散射形式

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Most of the Mie-scattering calculations have been done for a particle embedded in a nonabsorbing host medium. Generalization to an absorbing host medium can be achieved (a) by: modifying the calculation of the spherical Bessel functions to account:for a complex argument and (b) by accounting properly for the net rate of incident, scattered, and absorbed energy. We present an extended formalism of Mie scattering for the case of an absorbing host medium. Numerical calculations show that for a large spherical particle embedded in an absorbing host medium the extinction efficiency approaches 1 compared with 2 for a nonabsorbing host medium. We conjecture that this difference is due to the suppression of diffraction when the radius of the sphere is large. (C) 2001 Optical Society of America. [References: 12]
机译:大多数Mie散射计算都是针对嵌入非吸收性宿主介质中的粒子完成的。可以通过以下方式实现对吸收性宿主介质的泛化:(a)通过修改球形贝塞尔函数的计算以解决:对于一个复杂的论点;以及(b)通过适当考虑入射,散射和吸收能的净速率。对于吸收性宿主介质,我们提出了Mie散射的扩展形式主义。数值计算表明,对于嵌入吸收性基质中的大球形颗粒,消光效率接近1,而对于非吸收性基质则消光效率接近2。我们推测,这种差异是由于球半径较大时对衍射的抑制所致。 (C)2001年美国眼镜学会。 [参考:12]

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