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Characteristics of HPHT diamond grown at sub-lithosphere conditions (10-20 GPa)

机译:在低于冰层的条件下(10-20 GPa)生长的HPHT金刚石的特性

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We have conducted high pressure-high temperature (HPHT) diamond synthesis experiments at the conditions of growth of superdeep diamonds (10-20 GPa), equivalent to the transition zone, using MgCO_3 carbonate (oxidising) and FeNi (reducing) solvent catalysts. High rates of graphite-diamond transformation were observed in these short duration experiments (20 min). Transformation rates were higher using the metallic catalyst than in the carbonate system. High degrees of carbon supersaturation at conditions significantly above the graphite-diamond stability line, led to a high nucleation density. This resulted in the growth of aggregated masses of diamond outlined by polygonised diamond networks, resembling carbonado. Where individual crystals are visible, grown diamonds are octahedral in the lower pressure experiments (<10 GPa in MgCO_3 and < 15 GPa in FeNi) and, cubo-octahedral at higher pressure. All grown diamonds show a high degree of twinning. The diamonds lack planar deformation features such as laminations or slip planes, which are commonly associated with natural superdeep diamonds.
机译:我们使用MgCO_3碳酸盐(氧化)和FeNi(还原)溶剂催化剂,在相当于过渡区的超深金刚石(10-20 GPa)的生长条件下进行了高压高温(HPHT)金刚石合成实验。在这些短期实验(20分钟)中观察到了很高的石墨-金刚石转化率。使用金属催化剂的转化率高于碳酸盐体系。在明显高于石墨-金刚石稳定性线的条件下,高碳过饱和度会导致高成核密度。这导致了由多角形钻石网络勾勒出的类似于卡巴多钻石的钻石聚集块的增长。在可以看到单个晶体的地方,在较低压力的实验(MgCO_3中的<10 GPa和在FeNi中的<15 GPa)中,生长的钻石为八面体,而在较高的压力下为立方八面体。所有生长的钻石都显示出很高的孪晶度。钻石缺乏通常与天然超深钻石相关的平面变形特征,例如叠片或滑动平面。

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