首页> 外文期刊>The Astrophysical journal >FORMATION AND ALIGNMENT OF ELONGATED, FRACTAL-LIKE WATER-ICE GRAINS IN EXTREMELY COLD, WEAKLY IONIZED PLASMA
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FORMATION AND ALIGNMENT OF ELONGATED, FRACTAL-LIKE WATER-ICE GRAINS IN EXTREMELY COLD, WEAKLY IONIZED PLASMA

机译:极端冷弱电离等离子体中长形,分形状水​​冰粒的形成和排列

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摘要

Elongated, fractal-like water-ice grains are observed to form spontaneously when water vapor is injected into a weakly ionized laboratory plasma formed in a background gas cooled to an astrophysically relevant temperature. The water-ice grains form in 1–2 minutes, levitate with regular spacing, and are aligned parallel to the sheath electric field. Water-ice grains formed in plasma where the neutrals and ions have low mass, such as hydrogen and helium, are larger, more elongated, and more fractal-like than water-ice grains formed in plasmas where the neutrals and ions have high mass such as argon and krypton. Typical aspect ratios (length to width ratio) are as great as 5 while typical fractal dimensions are ~1.7. Water-ice grain lengths in plasmas with low neutral and ion masses can be several hundred microns long. Infrared absorption spectroscopy reveals that the water-ice grains are crystalline and so are similar in constitution to the water-ice grains in protoplanetary disks, Saturn's rings, and mesospheric clouds. The properties and behavior of these laboratory water-ice grains may provide insights into morphology and alignment behavior of water-ice grains in astrophysical dusty plasmas.
机译:当将水蒸气注入弱离子化的实验室等离子体中时,会观察到细长的,分形的水冰颗粒自发形成,该等离子体在背景气体中冷却至与天体物理学相关的温度。水冰粒在1-2分钟内形成,以规则的间距悬浮,并平行于鞘层电场排列。在中性和离子质量较弱的等离子体中形成的水​​冰晶粒比在中性和离子质量较高的等离子体中形成的水​​冰晶粒更大,更细长且更像分形,例如氢和氦作为氩气和k气典型的纵横比(长宽比)高达5,而典型的分形维数约为1.7。具有低中性和离子质量的等离子体中的水冰晶粒长度可能长达数百微米。红外吸收光谱显示,水冰晶是结晶的,因此其组成与原行星盘,土星环和中层云中的水冰晶相似。这些实验室水冰粒的性质和行为可能提供洞察天体尘土等离子体中水冰粒的形态和排列行为的见解。

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