散射
米氏散射
Crystal(编程语言)
组分(热力学)
共振(粒子物理)
凝聚态物理
材料科学
物理
横截面
光学
光散射
量子力学
结构工程
计算机科学
程序设计语言
工程类
作者
Honggang Zhao,Jihong Wen,Yaozong Liu,Dianlong Yu,Gang Wang,Xisen Wen
标识
DOI:10.1088/1674-1056/17/4/026
摘要
Using an exact Mie scattering solution, this paper investigates the mode conversions during the Mie scattering of a single bi- or one-component sphere in unbounded epoxy. Then the formation mechanism of the first complete gap in the corresponding tri- or bi-component phononic crystal is investigated by the multiple-scattering method. It is shown that the heavy density of the scatterer plays an essential role in the Mie resonance and the formation of the gaps for both types of the phononic crystals. For the tri-component phononic crystal, the gap is mainly induced by the Mie resonance of the single scatterer. For the bi-component phononic crystal, the transverse wave (by mode-conversion during the Mie scattering under a longitudinal wave incidence) is modulated by the periodicity and governed by the Bloch theory, which induces the gap cooperatively.
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