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Body-Centered Cubic Iron-Nickel Alloy in Earth's Core

机译:地球中心的体心立方铁镍合金

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Cosmochemical, geochemical, and geophysical studies provide evidence that Earth's core contains iron with substantial (5 to 15%) amounts of nickel. The iron-nickel alloy Fe_(0.9)Ni_(0.1) has been studied in situ by means of angle-dispersive x-ray diffraction in internally heated diamond anvil cells (DACs), and its resistance has been measured as a function of pressure and temperature. At pressures above 225 gigapascals and temperatures over 3400 kelvin, Fe_(0.9)Ni_(0.1) adopts a body-centered cubic structure. Our experimental and theoretical results not only support the interpretation of Shockwave data on pure iron as showing a solid-solid phase transition above about 200 gigapascals, but also suggest that iron alloys with geochemically reasonable compositions (that is, with substantial nickel, sulfur, or silicon content) adopt the bcc structure in Earth's inner core.
机译:宇宙化学,地球化学和地球物理研究提供了证据,表明地球核心包含铁和大量镍(5%至15%)。铁镍合金Fe_(0.9)Ni_(0.1)已通过角度分散x射线衍射在内部加热的金刚石砧座(DAC)中进行了现场研究,其电阻随压力和压力的函数进行了测量温度。在225吉帕以上的压力和3400开尔文以上的温度下,Fe_(0.9)Ni_(0.1)采用体心立方结构。我们的实验和理论结果不仅支持对纯铁的Shockwave数据的解释,因为它显示了约200吉帕斯卡以上的固-固相变,而且还暗示了具有地球化学组成合理的铁合金(即具有大量镍,硫或硅含量)在地球内核中采用密件抄送结构。

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