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首页> 外文期刊>Journal of surface investigation: x-ray, synchrotron and neutron techniques >Application of synchrotron radiation to the study of the internal structure of natural regular and irregular diamonds
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Application of synchrotron radiation to the study of the internal structure of natural regular and irregular diamonds

机译:同步辐射在天然规则和不规则钻石内部结构研究中的应用

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摘要

The internal structure of regular and irregular diamond crystals of the Snap Lake deposit of the Slave province (Canada) is studied using the Laue-SR synchrotron method. The crystals under study were classified into regular and irregular diamonds according to IR spectroscopy data. It is shown that irregular diamonds, in contrast to regular, underwent plastic deformation during the postgrowth period. Plastic deformation by slip or spinel-law twinning is observed for diamonds with insignificant nitrogen concentrations. For most studied crystals with high concentrations of platelets (B' defects), irregular misorientations of local regions of a deformed crystal, such as faults and kinks, are characteristic. The interaction of dislocations formed during plastic deformation, with the dislocations surrounding the platelets, causes destruction of the latter at high P-T parameters typical of the upper mantle.
机译:使用Laue-SR同步加速器方法研究了Slave省(加拿大)的Snap Lake矿床的规则和不规则金刚石晶体的内部结构。根据红外光谱数据,研究中的晶体分为规则和不规则菱形。结果表明,与普通钻石相比,不规则钻石在后生期经历了塑性变形。对于氮含量微不足道的钻石,观察到通过滑移或尖晶石定律孪晶产生的塑性变形。对于大多数研究的具有高浓度血小板(B'缺陷)的晶体,特征是变形晶体局部区域的不规则取向错误,例如断层和扭结。塑性变形过程中形成的位错与围绕血小板的位错的相互作用导致上层地幔在高P-T参数下破坏后者。

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