首页> 外文期刊>Crystals >Non-Destructive In Situ Study of Plastic Deformations in Diamonds: X-ray Diffraction Topography and μFTIR Mapping of Two Super Deep Diamond Crystals from S?o Luiz (Juina, Brazil)
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Non-Destructive In Situ Study of Plastic Deformations in Diamonds: X-ray Diffraction Topography and μFTIR Mapping of Two Super Deep Diamond Crystals from S?o Luiz (Juina, Brazil)

机译:金刚石塑性变形的非破坏性原位研究:来自S?o Luiz(巴西朱纳)的两种超深金刚石晶体的X射线衍射形貌和μFTIR映射

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Diamonds from Juina, Brazil, are well-known examples of superdeep diamond crystals formed under sublithospheric conditions and evidence would indicate their origins lie as deep as the Earth’s mantle transition zone and the Lower Mantle. Detailed characterization of these minerals and of inclusions trapped within them may thus provide precious minero-petrogenetic information on their growth history in these inaccessible environments. With the aim of studying non-destructively the structural defects in the entire crystalline volume, two diamond samples from this locality, labelled JUc4 and BZ270, respectively, were studied in transmission mode by means of X-ray Diffraction Topography (XRDT) and micro Fourier Transform InfraRed Spectroscopy (μFTIR). The combined use of these methods shows a good fit between the mapping of spatial distribution of extended defects observed on the topographic images and the μFTIR maps corresponding to the concentration of N and H point defects. The results obtained show that both samples are affected by plastic deformation. In particular, BZ270 shows a lower content of nitrogen and higher deformation, and actually consists of different, slightly misoriented grains that contain sub-grains with a rounded-elongated shape. These features are commonly associated with deformation processes by solid-state diffusion creep under high pressure and high temperature.
机译:来自巴西朱纳的钻石是在近岩石圈条件下形成的超深钻石晶体的著名例子,有证据表明,它们的起源与地幔过渡区和下地幔一样深。这些矿物和困在其中的夹杂物的详细表征可能会提供有关这些无法进入的环境中它们的生长历史的宝贵的矿物岩石信息。为了无损研究整个晶体体积中的结构缺陷,通过X射线衍射形貌(XRDT)和微傅里叶变换以透射模式研究了来自该地区的两个钻石样品,分别标记为Juc4和BZ270。变换红外光谱(μFTIR)。这些方法的组合使用显示了在形貌图像上观察到的扩展缺陷的空间分布图与对应于N和H点缺陷浓度的μFTIR图之间的良好契合。获得的结果表明,两个样品都受到塑性变形的影响。特别是,BZ270的氮含量较低,变形较高,实际上是由不同的,取向稍有不同的晶粒组成,这些晶粒包含具有圆形伸长形状的亚晶粒。这些特征通常与高压和高温下固态扩散蠕变引起的变形过程有关。

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