论文标题

DC发光放电中二维复合物等离子体晶体的熔化过渡

Melting transition of two-dimensional complex plasma crystal in the DC glow discharge

论文作者

Jaiswal, S., Thomas Jr, Ed

论文摘要

在RF产生的等离子体中,自一致的尘埃晶体及其熔化的形成是一种众所周知的现象,但在DC Glow放电等离子体中仍然具有挑战性。在这里,我们报告了二维灰尘等离子体晶体的熔化,悬浮在直流发光排出血浆的阴极鞘中。实验是在$π-$形的灰尘等离子体实验(DPEX)设备中进行的,其中在氩等离子体的背景中形成了三聚氰胺甲醛颗粒的固定晶体。稳定的结构破裂并导致降低中性压力的流体状态。%甚至在非常低的压力下达到类似气体状态。观察到这种熔化转变的中性压力范围比RF放电等离子体中报道的数量级要小。通过评估不同特征参数的变化,例如对相关函数,Voronoi图,局部粘结顺序,缺陷分数和灰尘温度作为背景中性压力的函数来确认过渡。过渡归因于有效颗粒温度的升高,我们认为这是由于电荷波动和离子流的增加而发生的。该设备的特征有助于形成粉尘晶体及其在DC发光放电中的熔化,以研究与DC Glow放电等离子体设备中与尘埃晶体相关的各种现象。

The formation of self-consistent dust crystal and its melting is a well known phenomenon in rf generated plasma but remains challenging in DC glow discharge plasma. Here, we report the melting of a two dimensional dusty plasma crystal, suspended in the cathode sheath of a DC glow discharge plasma. The experiments are carried out in a $Π-$shaped Dusty Plasma Experimental (DPEx) device where a stationary crystal of melamine formaldehyde particles is formed between the confining strips in a background of Argon plasma. The stable structure breaks and leads to a fluid state on reducing the neutral pressure.% and even reaches to a gas like states at very low pressure. The neutral pressure range where this melting transition is observed is an order of magnitude less than what reported in rf discharge plasma. The transition is confirmed by evaluating the variation in different characteristic parameters such as the pair correlation function, voronoi diagram, local bond order, defect fraction and dust temperature as a function of background neutral pressure. The transition is attributed to an increase in effective particle temperature which we believe is occurred due to increase in charge fluctuation and ion streaming. The special feature of the device that helps formation of dust crystal and its melting in DC glow discharge can be implemented to study various phenomena associated with dust crystal in dc glow discharge plasma devices.

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