Roll G, Kaiser T, Schweiger G
Appl Opt. 1998 Apr 20;37(12):2483-92. doi: 10.1364/ao.37.002483.
In the framework of Mie theory the involved electromagnetic fields are expanded in an infinite series of multipoles. In numerical computations the summation has to be terminated after a finite number of terms (the expansion order N), which unavoidably produces errors. On the other hand, it is known that the contributions of terms of order l with x <l < N, where x is the dimensionless size parameter, are highly localized, i.e., these contributions appear as sharp peaks in resonance spectra. We show that it is possible to specify the expansion order in a controlled manner to extract certain features from Mie spectra. This controlled modification of the expansion order can be used as a high-pass, low-pass or bandpass filter. Formulas that serve as linewidth (frequency) and resonance-order filters are given, and their usage is demonstrated.
在米氏理论框架下,所涉及的电磁场被展开为无穷多项的多极子级数。在数值计算中,求和必须在有限项(展开阶数N)之后终止,这不可避免地会产生误差。另一方面,已知当x < l < N时(其中x是无量纲尺寸参数),l阶项的贡献高度局域化,即这些贡献在共振光谱中表现为尖锐的峰值。我们表明,可以以可控的方式指定展开阶数,以便从米氏光谱中提取某些特征。这种对展开阶数的可控修改可用作高通、低通或带通滤波器。给出了用作线宽(频率)和共振阶数滤波器的公式,并展示了它们的用法。