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Transformations of dust structures in glow DC discharge in neon: effect of gas temperature and discharge current

机译:霓虹灯直流放电粉尘结构的转变:气体温度和放电电流的影响

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The dependence of the shape of the dust structures on discharge current and pressure in neon glow DC discharge at temperatures 77 K and 295 К has been studied experimentally. It was found that when the discharge current was increased, the radial size of the dust cloud increased, and the axial size decreased. It was found that at 295 К the dust clouds were formed by individual dust particles, while at 77 K they consisted of a mixture of dust particles and simplest threadlike clusters formed from dust particles. The decrease of gas pressure led to increase in distances between the dust particles and clusters, and reduced the dynamic stability of the dust particles and clusters. At 295 К an increase of the discharge current resulted in the formation of voids in dust structures, while at 77 K the formation of the dust structures with voids was not observed even at maximum discharge currents. The formation of clusters at cryogenic cooling can be interpreted as ‘condensation' and ‘deposition' of dust particles.
机译:实验研究了在温度77k和295К的氖气DC放电中放电电流和压力的灰尘结构的依赖性。发现当放电电流增加时,灰尘云的径向尺寸增加,并且轴向尺寸减小。发现,在295к,通过单独的粉尘颗粒形成尘云,而在77k处形成,它们由粉尘颗粒和由粉尘颗粒形成的最简单的螺纹簇的混合物组成。气体压力降低导致粉尘颗粒和簇之间的距离增加,并降低了粉尘颗粒和簇的动态稳定性。在295к处,放电电流的增加导致灰尘结构中的空隙形成,而在77k处,即使在最大放电电流下也没有观察到具有空隙的粉尘结构的形成。在低温冷却时形成簇可以被解释为粉尘颗粒的“凝结”和“沉积”。

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