Xie Li, Li Xingcai, Zheng Xiaojing
Key Laboratory of Mechanics on Western Disaster and Environment, Department of Mechanics, Lanzhou University, Lanzhou, 730000, China.
Appl Opt. 2010 Dec 10;49(35):6756-61. doi: 10.1364/AO.49.006756.
We calculate the light scattering properties of the partially charged dust particles with the Mie theory for electromagnetic waves with different frequencies, and the attenuation coefficients of an electromagnetic wave propagating in a sandstorm are also calculated. The results show that the electric charges distributed on the sand surface have a significant effect on the attenuation of the electromagnetic wave, especially for a frequency lower than 40 GHz, and attenuation coefficients increase with the magnitude of charges carried by the dust particles (expressed by the charge-to-mass ratio in this paper). For the higher frequency electromagnetic wave, such as visible light, the effect of charges carried by sand particles on its attenuation is very little, which can be ignored.
我们利用米氏理论计算了不同频率电磁波下部分带电尘埃颗粒的光散射特性,并计算了在沙尘暴中传播的电磁波的衰减系数。结果表明,分布在沙尘表面的电荷对电磁波的衰减有显著影响,特别是对于频率低于40吉赫兹的情况,并且衰减系数随着尘埃颗粒所带电荷量的增加而增大(本文中用荷质比表示)。对于高频电磁波,如可见光,沙尘颗粒所带电荷对其衰减的影响非常小,可以忽略不计。