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首页> 外文期刊>Geophysical Research Letters >High-pressure phase transformation in CaMgSi2O6 and implications for origin of ultra-deep diamond inclusions
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High-pressure phase transformation in CaMgSi2O6 and implications for origin of ultra-deep diamond inclusions

机译:CaMgSi2O6中的高压相变及其对超深金刚石包裹体起源的影响

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摘要

The decomposition of diopside to CaSiO3 cubic and MgSiO3 orthorhombic perovskites was demonstrated by in situ X-ray diffraction measurements under simultaneous high pressure and high temperature conditions, using a combination of synchrotron radiation and a multianvil apparatus at SPring-8. Quench experiments also confirmed the decomposition of diopside in a wide temperature range of 1000-1900 degreesC and at pressures 23-27GPa. These results strongly support the idea that some mineral inclusions with pyroxene stoichiometry discovered in natural diamonds may have been originated from the lower mantle. Moreover, observed temperature dependence of MgSiO3 content dissolved in CaSiO3 perovskite suggests that some of the inclusions were formed at relatively low temperatures (<1200C) in the deep mantle, presumably related to slab subductions. [References: 23]
机译:通过同时在高压和高温条件下使用同步辐射和多砧装置在SPring-8上进行原位X射线衍射测量,证明了透辉石分解为CaSiO3立方晶和MgSiO3正交晶状钙钛矿。淬灭实验还证实了透辉石在1000-1900摄氏度的宽温度范围和23-27GPa的压力下分解。这些结果强烈支持这样的想法,即天然钻石中发现的某些具有辉石化学计量的矿物包裹体可能源自下地幔。此外,观察到的溶解在钙钛矿型CaSiO3中的MgSiO3含量的温度依赖性表明,某些夹杂物是在相对较低的温度(<1200℃)下在深地幔中形成的,大概与平板俯冲有关。 [参考:23]

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