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Evidence for ice VI as an inclusion in cuboid diamonds from high P-T near infrared spectroscopy

机译:高P-T近红外光谱法证明长方体钻石中包含VI的证据

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Near infrared absorption (NIR) spectra of natural morphologically cubic polycrystalline diamonds (cuboid) were obtained at room temperature, and the stretching plus bending combination band of molecular water was observed. The spectrum consisted of the main band at 5180 cm~(-1) due to liquid water and a shoulder at 5000 cm~(-1). The 5000 cm~(-1) band suggests the presence of a phase with stronger hydrogen bonding in inclusions in the diamond. This shoulder absorption decreased on heating to 120 deg C. The combination band of H_2O at high pressure and temperature was measured using a resistively heated diamond cell and the pressure dependence of the peak position was obtained. Comparison with the present experimental results indicates that the spectral changes induced by heating of the cuboid corresponded to melting of a high-pressure form of ice, and the shoulder absorption at 5000 cm~(-1) arises from ice VI at 1.9 CPa. On the other hand, the liquid water, a main component of the fluid inclusions in the cuboid, was not under high pressure judging from the frequency of the combination band. This contrast might relate to the texture of the cuboid diamond. The spectral observation enables us to estimate the residual pressure of mantle fluid encapsulated in these diamonds. The diamond-cell data also provide high-P-T NIR fingerprint spectra that could be useful for identifying H_2O phases and confining pressures in other samples.
机译:在室温下获得天然形态立方多晶金刚石(立方体)的近红外吸收(NIR)光谱,并观察到了分子水的拉伸加弯曲结合带。该光谱由液态水引起的5180 cm〜(-1)处的主谱带和5000 cm〜(-1)处的谱线组成。 5000 cm〜(-1)带表明金刚石中的夹杂物中存在具有较强氢键的相。该肩部吸收在加热至120℃时降低。使用电阻加热的金刚石电池在高压和高温下测量H_2O的结合带,并获得峰位置的压力依赖性。与本实验结果的比较表明,由长方体的加热引起的光谱变化对应于高压形式的冰的融化,并且5000 cm〜(-1)处的肩部吸收是由1.9 CPa的冰VI引起的。另一方面,从组合带的频率来看,长方体中流体包裹体的主要成分液态水没有处于高压下。这种对比可能与长方体钻石的质感有关。光谱观察使我们能够估计包裹在这些钻石中的地幔流体的残余压力。钻石细胞数据还提供了高P-T NIR指纹图谱,可用于识别其他样品中的H_2O相和限制压力。

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