首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Discrete-dipole approximation with polarizabilities that account for both finite wavelength and target geometry
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Discrete-dipole approximation with polarizabilities that account for both finite wavelength and target geometry

机译:离散偶极子近似,极化率同时考虑了有限波长和目标几何形状

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The discrete-dipole approximation (DDA) is a powerful method for calculating absorption and scattering by targets that have sizes smaller than or comparable with the wavelength of the incident radiation. We present a new prescription—the surface-corrected-lattice-dispersion relation (SCLDR)—for assigning the dipole polarizabilities while taking into account both target geometry and finite wavelength. We test the SCLDR in DDA calculations for spherical and ellipsoidal targets and show that for a fixed number of dipoles, the SCLDR prescription results in increased accuracy in the calculated cross sections for absorption and scattering. We discuss extension of the SCLDR prescription to irregular targets.
机译:离散偶极近似(DDA)是一种强大的方法,可用于计算尺寸小于或等于入射辐射波长的目标的吸收和散射。我们提出了一种新的处方-表面校正的晶格-色散关系(SCLDR)-用于分配偶极子极化率,同时考虑了目标几何形状和有限波长。我们在DDA计算中针对球形和椭圆形目标测试了SCLDR,结果表明,对于固定数目的偶极子,SCLDR处方可提高吸收和散射计算截面的准确性。我们讨论将SCLDR处方扩展到不规则目标。

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