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COSMIC DUST SYNTHESIS BY ACCRETION AND COAGULATION

机译:通过吸收和凝结合成粉尘

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摘要

The morphology of grains grown by accretion and coagulation is revealed by a new laboratory method of synthesizing cosmic dust analogs. Submicron carbon particles, grown by accretion of carbon atoms from a gas, have a spherical shape with a cauliflower-like surface and an internal micro-structure of radial columns. This shape is probably common for grains grown by accretion at a temperature well below the melting point. Coagulated grains, consisting of spheres that collided to form irregular strings, were also synthesized. Another shape we produced had a bumpy non-spherical morphology, like an interplanetary particle collected in the terrestrial stratosphere. Besides these isolated grains, large spongy aggregates of nanometer-size particles were also found for various experimental conditions. Grains were synthesized using ions to sputter a solid target, producing an atomic vapor at a low temperature. The ions were provided by a plasma, which also provided electrostatic levitation of the grains during their growth. The temporal development of grain growth was studied by extinguishing the plasma after various intervals.
机译:通过合成尘埃类似物的新实验室方法揭示了通过积聚和凝结生长的谷物的形态。通过从气体中积聚碳原子而生长的亚微米碳颗粒具有球形形状,具有菜花状表面和径向柱的内部微观结构。对于在远低于熔点的温度下积聚生长的晶粒,这种形状可能很常见。还合成了凝集的谷物,该谷物由碰撞形成不规则弦的球组成。我们生产的另一种形状具有颠簸的非球形形态,例如在地面平流层中收集的行星际粒子。除了这些孤立的晶粒外,还发现了各种实验条件下的大型海绵状聚集体。使用离子溅射固体靶来合成晶粒,从而在低温下产生原子蒸气。离子是由等离子体提供的,等离子体在颗粒生长过程中也提供了静电悬浮作用。通过在各种间隔后熄灭等离子体来研究晶粒生长的时间发展。

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