首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Pressure-volume-temperature relations in MgO: An ultrahigh pressure-temperature scale for planetary sciences applications
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Pressure-volume-temperature relations in MgO: An ultrahigh pressure-temperature scale for planetary sciences applications

机译:MgO中的压力-体积-温度关系:用于行星科学应用的超高压标度

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In situ crystallography based on diamond anvil cells have been extended to the multimegabar regime. Temperatures in these experiments have crossed the 2500 K mark. Yet, current high pressure-temperature (PT) standards of calibration produce uncertainties that inhibit clear conclusions about phenomena of importance to planetary processes, e.g., the postperovskite transition in Earth's mantle. We introduce a new thermal equation of state (EOS) of MgO which appears to be predictive up to the multimegabar and thousands of kelvin range. It is obtained by combining first principles local density approximation quasi-harmonic (QHA) calculations with experimental low-pressure data. This EOS agrees exceptionally well with shock compression data. The postspinel and postperovskite phase boundaries recalculated using our EOS match seismic observations. The latter, in particular, supports the idea that postperovskite transforms back to perovskite before the core-mantle boundary. The recalculated experimental Clapeyron slope of the postperovskite transition is also more consistent with those obtained by first principles calculations.
机译:基于金刚石砧座细胞的原位晶体学已经扩展到多兆巴机制。这些实验中的温度已超过2500 K大关。然而,当前的校准的高压-温度(PT)标准产生了不确定性,这些不确定性阻碍了关于对行星过程重要的现象的明确结论,例如地球地幔中的钙钛矿过渡。我们引入了一个新的MgO状态热方程(EOS),它在高达数兆巴和数千开尔文量程的范围内似乎都是可以预测的。它是通过将第一原理局部密度近似准谐波(QHA)计算与实验低压数据相结合而获得的。该EOS与冲击压缩数据非常吻合。使用我们的EOS匹配地震观测值重新计算了松油后和钙钛矿后的相界。后者尤其支持以下观点:后钙钛矿在岩心幔边界之前变回钙钛矿。重新计算后钙钛矿过渡的克拉珀龙实验斜率也与通过第一原理计算获得的斜率更加一致。

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