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Transformation of shock-compressed graphite to hexagonal diamond in nanoseconds

机译:纳秒内将冲击压缩石墨转变为六角形金刚石

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摘要

The graphite-to-diamond transformation under shock compression has been of broad scientific interest since 1961. The formation of hexagonal diamond (HD) is of particular interest because it is expected to be harder than cubic diamond and due to its use in terrestrial sciences as a marker at meteorite impact sites. However, the formation of diamond having a fully hexagonal structure continues to be questioned and remains unresolved. Using real-time (nanosecond), in situ x-ray diffraction measurements, we show unequivocally that highly oriented pyrolytic graphite, shock-compressed along the c axis to 50 GPa, transforms to highly oriented elastically strained HD with the (100)HD plane parallel to the graphite basal plane. These findings contradict recent molecular dynamics simulation results for the shock-induced graphite-to-diamond transformation and provide a benchmark for future theoretical simulations. Additionally, our results show that an earlier report of HD forming only above 170 GPa for shocked pyrolytic graphite may lead to incorrect interpretations of meteorite impact events.
机译:自1961年以来,受到冲击压缩的石墨到金刚石的转变就引起了广泛的科学兴趣。六角形金刚石(HD)的形成特别引起人们的兴趣,因为预计它比立方金刚石更坚硬,并且由于其在地面科学中的使用,例如在陨石撞击地点的标记。然而,具有完全六边形结构的金刚石的形成仍受到质疑,并且仍未解决。使用实时(纳秒)原位X射线衍射测量,我们清楚地表明,沿c轴冲击压缩到50 GPa的高取向热解石墨转变为具有(100)HD平面的高取向弹性应变HD平行于石墨基面。这些发现与最近的分子动力学模拟结果相矛盾,该结果模拟了激振诱导的石墨到金刚石的转变,并为将来的理论模拟提供了基准。此外,我们的结果表明,较早的报道表明,冲击热解石墨的HD形成仅在170 GPa以上,可能导致对陨石撞击事件的错误解释。

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