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Dynamics of plasma-dust structures formed in a trap created in the narrowing of a current channel in a magnetic field

机译:在磁场中电流通道变窄时在阱中形成的等离子体尘埃结构的动力学

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摘要

The geometry and dynamics of plasma-dust structures in a longitudinal magnetic field is studied experimentally. The structures are formed in a glow-discharge trap created in the double electric layer produced as a result of discharge narrowing by means of a dielectric insert introduced in the discharge tube. Studies of structures formed in the new type of glow-discharge trap are of interest from the standpoint of future experiments with complex plasmas in superstrong magnetic fields in which the dust component is magnetized. Different types of dielectric inserts were used: conical and plane ones with symmetric and asymmetric apertures. Conditions for the existence of stable dust structures are determined for dust grains of different density and different dispersity. According to the experimental results, the angular velocity of dust rotation is a parts per thousand yen10 s(-1), which is the fastest type of dust motion for all types of discharges in a magnetic field. The rotation is interpreted by analyzing the dynamics of individual dust grains.
机译:实验研究了在纵向磁场中等离子粉尘结构的几何形状和动力学。所述结构形成在辉光放电阱中,该辉光放电陷阱在通过引入到放电管中的电介质插入物使放电变窄而产生的双电层中产生。从未来实验的角度出发,研究新型辉光放电阱中形成的结构是很有意义的,该实验是在超强磁场中将尘埃成分磁化的复杂等离子体。使用了不同类型的介电插件:圆锥形和平面形的对称和非对称孔。对于不同密度和不同分散度的尘埃颗粒,确定存在稳定尘埃结构的条件。根据实验结果,粉尘旋转的角速度为千分之一日元10 s(-1),这是磁场中所有放电类型中粉尘运动最快的类型。通过分析单个尘粒的动力学来解释旋转。

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