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Internal dipole radiation as a tool for particle identification

机译:内部偶极子辐射作为粒子识别的工具

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摘要

A numerical approach for the calculation of the internal dipole radiation associated with particles of arbitrary morphology is investigated by using the discrete-dipole approximation (DDA) method. The DDA and analytical solutions for the total radiated power and radiation pattern are compared in the case of spherical host particles. It is shown that the DDA can be quite accurate under the condition that m approx.< 2, and mkd < 0.5, where m is the refractive index of the host particle, k velence 2pi/lambda is the wavenumber in vacuum, and d is the distance between two adjacent dipoles in the DDA cubic dipole array. Furthermore, the DDA solutions for the dipole radiation patterns associated with nonspherical host particles are compared with their corresponding counterparts obtained from the finite-difference time-domain method. Excellent agreement between the two results is noted. The DDA method is also applied to the computation of the internal dipole radiation associated with simulated nonspherical sporelike particles. The results suggest that the internal dipole radiation patterns contain a great deal of information about the morphology and composition of the host particle.
机译:通过使用离散偶极近似(DDA)方法研究了一种计算与任意形态粒子相关的内部偶极辐射的数值方法。对于球形主体颗粒,比较了DDA和总辐射功率和辐射方向图的解析解。结果表明,在m约<2,mkd <0.5的条件下,DDA可以非常精确,其中m是主体颗粒的折射率,k velence 2pi / lambda是真空中的波数,d是DDA立方偶极子阵列中两个相邻偶极子之间的距离。此外,将与非球形主体粒子相关的偶极辐射方向图的DDA解与从有限差分时域方法获得的对应解进行了比较。注意到两个结果之间的极好的一致性。 DDA方法还应用于与模拟的非球形孢子状颗粒相关的内部偶极子辐射的计算。结果表明,内部偶极子辐射图包含有关主体粒子的形态和组成的大量信息。

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