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Coulomb Dust Spheres in a Glow Discharge in Neon at Cryogenic Temperatures

机译:库仑尘埃球在霓虹灯放电,在霓虹灯下在低温温度下

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摘要

The discharge parameters for the formation of charged spherical dust structures (Coulomb dust spheres) in neon plasma at a discharge tube wall temperature of 77 K are determined. The dust spheres were experimentally observed at fixed neon pressures of 0.15, 0.9, and 1.2 Torr. They were also obtained by extrapolation at pressures of 0.42 and 0.65 Torr. The dust spheres form at the discharge current corresponding to the intersection points of the dependences of the radial and axial dimensions of the dust structures on the discharge current. The correlation between the plasma parameters at which the dust spheres are formed and their composition, phase and dynamic states of their components, and dimensions of the dust spheres is analyzed. The variations in the parameters of the discharge plasma and dust spheres caused by a change in the gas pressure are numerically simulated. A continuous second-order phase transition is discovered in dust spheres at pressures of 0.15-0.65 Torr. An increase in the chemical potential of dust spheres is found near the liquidus line and the line separating the dust mixture components on the P-I phase diagram.
机译:确定在放电管壁温度为77k的氖等离子体中形成带电球形粉尘结构(库仑尘球)的放电参数。在0.15,0.9和1.2托的固定氖压力下通过实验观察尘埃球。它们也通过0.42和0.65托的压力外推得到的。灰尘球在对应于放电电流上灰尘结构径向和轴向尺寸的依赖性的交叉点的放电电流形成。分析了灰尘球的等离子体参数与其组成,相位和动态状态的等离子体参数的相关性,以及尘埃球的尺寸。用气压变化引起的放电等离子体和尘球的参数的变化在数值上模拟。在尘埃球中在0.15-0.65托的压力下发现连续二阶相转变。粉尘球的化学潜力的增加在液相线和线上分离在P-I相图上的线附近。

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