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Simulation study of spheroidal dust gains charging: Applicable to dust grain alignment

机译:球状粉尘带电的仿真研究:适用于粉尘取向

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The charging process of nonspherical dust grains in an unmagnetized plasma as well as in the presence of a magnetic field is studied. It is shown that unlike the spherical dust grain, due to nonhomogeneity of charge distribution on the spheroidal dust surface, the resultant electric forces on electrons and ions are different. This process produces some surface charge density gradient on the nonspherical grain surface. Effects of a magnetic field and other plasma parameters on the properties of the dust particulate are studied. It has been shown that the alignment direction could be changed or even reversed with the magnetic field and plasma parameters. Finally, the charge distribution on the spheroidal grain surface is studied for different ambient parameters including plasma temperature, neutral collision frequency, and the magnitude of the magnetic field. (c) 2006 American Institute of Physics.
机译:研究了在非磁化等离子体中以及在磁场存在下非球形尘埃颗粒的充电过程。结果表明,与球形尘埃颗粒不同,由于球形尘埃表面上电荷分布的不均匀性,在电子和离子上产生的合力不同。此过程在非球形晶粒表面上产生一些表面电荷密度梯度。研究了磁场和其他等离子体参数对粉尘颗粒性质的影响。已经表明,对准方向可以随着磁场和等离子体参数而改变甚至相反。最后,针对不同的环境参数,包括等离子体温度,中性碰撞频率和磁场强度,研究了球形颗粒表面的电荷分布。 (c)2006年美国物理研究所。

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