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Raman Spectroscopy of Iron to 152 Gigapascals: Implications for Earth's Inner Core

机译:铁至152吉帕斯卡的拉曼光谱:对地球内核的影响

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Raman spectra of hexagonal close-packed iron (ε-Fe) have been measured from 15 to 152 gigapascals by using diamond-anvil cells with ultrapure synthetic diamond anvils. The results give a Griineisen parameter γ_o = 1.68 (±0.20) and q = 0.7 (±0.5). Phenomenological modeling shows that the Raman-active mode can be approximately correlated with an acoustic phonon and thus provides direct information about the high-pressure elastic properties of iron, which have been controversial. In particular, the C_(44) elastic modulus is found to be lower than previous determinations. This leads to changes of about 35% at core pressures for shear wave anisotropies.
机译:六方密堆积铁(ε-Fe)的拉曼光谱已通过使用金刚石砧盒和超纯合成金刚石砧在15至152千兆帕的范围内进行了测量。结果给出了Griineisen参数γ_o= 1.68(±0.20)和q = 0.7(±0.5)。现象学建模表明,拉曼激活模式可以与声子近似相关,因此可以提供有关铁的高压弹性的直接信息,这一直是有争议的。特别地,发现C_(44)弹性模量低于先前的确定。对于剪切波各向异性,这导致在核心压力下约35%的变化。

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