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根据尖晶石的固相线推断出的下地幔核边界温度。

Low core-mantle boundary temperature inferred from the solidus of pyrolite.

机构信息

Department of Earth and Planetary Sciences, Tokyo Institute of Technology, Meguro, Tokyo 152-8551, Japan.

出版信息

Science. 2014 Jan 31;343(6170):522-5. doi: 10.1126/science.1248186. Epub 2014 Jan 16.

Abstract

The melting temperature of Earth's mantle provides key constraints on the thermal structures of both the mantle and the core. Through high-pressure experiments and three-dimensional x-ray microtomographic imaging, we showed that the solidus temperature of a primitive (pyrolitic) mantle is as low as 3570 ± 200 kelvin at pressures expected near the boundary between the mantle and the outer core. Because the lowermost mantle is not globally molten, this provides an upper bound of the temperature at the core-mantle boundary (T(CMB)). Such remarkably low T(CMB) implies that the post-perovskite phase is present in wide areas of the lowermost mantle. The low T(CMB) also requires that the melting temperature of the outer core is depressed largely by impurities such as hydrogen.

摘要

地幔的熔融温度为地幔和地核的热结构提供了关键的约束条件。通过高压实验和三维 X 射线显微断层成像,我们发现原始(地幔柱)地幔的固相线温度在预计的地幔与外核边界附近低至 3570 ± 200 开尔文。由于下地幔并未整体熔融,这为地核-地幔边界(T(CMB))的温度提供了上限。如此低的 T(CMB)意味着后钙钛矿相广泛存在于下地幔中。低 T(CMB)还要求外核的熔融温度主要被杂质(如氢)所抑制。

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