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High-temperature electrical resistivity measurements of hcp iron to Mbar pressure in an internally resistive heated diamond anvil cell

机译:内部电阻加热金刚石砧座中HCP铁对MBAR压力的高温电阻率测量

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摘要

Electrical and thermal transport properties of iron are of great importance for understanding the thermal evolution and dynamics of the Earth's core, of which iron is a major component. However, the reported values of iron's conductivity at core conditions are still highly controversial. In this study, we employed an internally resistive heated diamond anvil cell (IHDAC) technique that reduces temperature heterogeneity inside the heated sample, and revisited the electrical resistivity of hexagonal closed packed (hcp) iron up to 110 GPa and 2500 K. Our results are in complete agreement with the reported values of the high pressure-temperature electrical resistivity of hcp iron obtained by using the laser-heated diamond anvil cell technique, supporting high iron conductivity at the Earth's core conditions. The high pressure-temperature resistivity measurement in an IHDAC employed here would be a more suitable method to examine more resistive iron alloys at the Earth's core conditions.
机译:铁的电气和热传输性能非常重要,以了解地球核心的热演化和动态,其中铁是一个主要成分。 然而,在核心条件下报道的铁的电导率值仍然具有矛盾。 在这项研究中,我们使用内部电阻的加热金刚石砧座(IHDAC)技术,其降低了加热样品内的温度异质性,并重新预测了高达110 GPA和2500 K的六边形封闭填充(HCP)铁的电阻率。我们的结果是 在通过使用激光加热的金刚石砧座技术获得的HCP铁的高压 - 升温电阻率的报告的报告中,支持地球核心条件的高铁导电性。 这里使用的IHDAC中的高压 - 温度电阻率测量是一种更合适的方法,用于在地球核心条件下检查更电阻的铁合金。

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