首页> 外文期刊>The Astrophysical Journal. Letters >Cryogenic-specific Reddish Coloration by Cryoplasma: New Explanation for Color Diversity of Outer Solar System Objects
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Cryogenic-specific Reddish Coloration by Cryoplasma: New Explanation for Color Diversity of Outer Solar System Objects

机译:冷冻胶质的低温特异性红光:外太阳系统对象的颜色多样性的新解释

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摘要

Reddish coloration and color diversity among icy bodies in the outer solar system are significant clues for understanding the status and history of the solar system. However, the origin of color distribution remains debatable. Here, we demonstrate reddish coloration that is stable only at cryogenic temperatures in a laboratory experiment. The reddish coloration was produced on methanol- and water-containing ice irradiated with nitrogen-containing cryoplasma at 85 K. The reddish color visually faded and disappeared at 120-150 K as the ice was heated, unlike well-known refractory organic tholins that are stable even when heated to room temperature. This temperature dependence of reddish coloration under cryogenic conditions could provide a new possible explanation for the absence of ultra-red coloration closer to the Sun in the outer solar system. Our result implies that a reddish material specific to cryogenic environments is useful for the investigation of color diversity and the formation mechanism of the outer solar system.
机译:外部太阳系中的冰冷机构中的红色着色和颜色多样性是了解太阳系的地位和历史的重要线索。然而,颜色分布的起源仍然是可扩张的。在这里,我们证明了Redddish着色,仅在实验室实验中的低温温度下稳定。在85 k下用含氮冷冻液照射的甲醇和含水冰中产生的红光。随着冰被加热的冰是可知的难治性有机苯胺不同即使加热到室温也稳定。这种在低温条件下的红色着色的这种温度依赖性可以为在外太阳系统中没有更接近太阳的超红色着色而提供新的可能解释。我们的结果意味着特定于低温环境的红材料对于对外太阳系的色彩分集和地层机构有用。

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