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Nonequilibrium Route to Nanodiamond with Astrophysical Implications

机译:纳米金刚石的非平衡途径及其天文学意义

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摘要

Nanometer-sized diamond grains are commonly found in primitive chondritic meteorites, but their origin is puzzling. Using evidence from atomistic simulation, we establish a mechanism by which nanodiamonds form abundantly in space in a two-stage process involving condensation of vapor to form carbon onions followed by transformation to nanodiamond in an energetic impact. This nonequilibrium process is consistent with common environments in space and invokes the fewest assumptions of any proposed model. Accordingly, our model can explain nanodiamond formation in both presolar and solar environments. The model provides an attractive framework for understanding noble gas incorporation and explains all key features of meteoritic nanodiamond, including size, shape, and polytype. By understanding the creation of nanodiamonds, new opportunities arise for their exploitation as a powerful astrophysical probe.
机译:纳米级的钻石晶粒通常存在于原始的软骨陨石中,但其来源令人困惑。利用来自原子模拟的证据,我们建立了一种机制,通过该机制纳米金刚石可以在两个阶段的过程中在太空中大量形成,该过程包括蒸气冷凝形成碳洋葱,然后在高能冲击下转化为纳米金刚石。这种非平衡过程与空间中的常见环境一致,并且引用了任何提议模型中最少的假设。因此,我们的模型可以解释太阳前和太阳环境下纳米金刚石的形成。该模型为理解稀有气体的掺入提供了一个有吸引力的框架,并解释了陨石纳米金刚石的所有关键特征,包括尺寸,形状和多型性。通过了解纳米金刚石的产生,利用纳米金刚石作为有力的天体物理探针会发现新的机会。

著录项

  • 来源
    《Physical review letters》 |2012年第7期|p.075503.1-075503.5|共5页
  • 作者单位

    Nanochemistry Research Institute, Curtin University, GPO Box U1987, Perth WA 6845, Australia;

    Nanochemistry Research Institute, Curtin University, GPO Box U1987, Perth WA 6845, Australia;

    School of Physics, The University of Sydney, Sydney NSW 2006, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    atomic, molecular, chemical, and grain processes;

    机译:原子;分子;化学和粮食过程;

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