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Spin state of ferric iron in MgSiO3 perovskite and its effect on elastic properties

机译:MgSiO3钙钛矿中三价铁的自旋态及其对弹性的影响

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Recent studies have indicated that a significant amount of iron in MgSiO3 perovskite (Pv) is Fe3+ (Fe3+/Sigma Fe = 10-60%) due to crystal chemistry effects at high pressure (P) and that Fe3+ is more likely than Fe2+ to undergo a high-spin (HS) to low-spin (LS) transition in Pv in the mantle. We have measured synchrotron Mossbauer spectroscopy (SMS), X-ray emission spectroscopy (XES), and X-ray diffraction (XRD) of Pv with all iron in Fe3+ in the laser-heated diamond-anvil cell to over 100 GPa. Fe3+ increases the anisotropy of the Pv unit cell, whereas Fe2+ decreases it. In Pv synthesized above 50GPa, Fe3+ enters into both the dodecahedral (A) and octahedral (B) sites approximately equally, suggesting charge coupled substitution. Combining SMS and XES, we found that the LS population in the B site gradually increases with pressure up to 50-60 GPa where all Fe3+ in the B site becomes LS, while Fe3+ in the A site remains HS to at least 136 GPa. Fe3+ makes Pv more compressible than Mg-endmember below 50 GPa because of the gradual spin transition in the B site together with lattice compression. The completion of the spin transition at 50-60 GPa increases bulk modulus with no associated change in density. This elasticity change can be a useful seismic probe for investigating compositional heterogeneities associated with Fe3+.
机译:最近的研究表明,由于在高压(P)下的晶体化学作用,MgSiO3钙钛矿(Pv)中大量的铁是Fe3 +(Fe3 + / Sigma Fe = 10-60%),并且与Fe2 +相比,Fe3 +更有可能经历地幔中Pv由高旋转(HS)向低旋转(LS)过渡。我们已经测量了Pv的同步加速器Mossbauer光谱(SMS),X射线发射光谱(XES)和X射线衍射(XRD),其中激光加热的金刚石-砧室中Fe3 +中的所有铁均超过100 GPa。 Fe3 +增加了Pv晶胞的各向异性,而Fe2 +则减小了各向异性。在高于50GPa合成的Pv中,Fe3 +大致同时进入十二面体(A)和八面体(B)的位点,表明电荷耦合取代。结合SMS和XES,我们发现B部位的LS群体随着压力的升高而逐渐增加,最高可达50-60 GPa,其中B部位的所有Fe3 +变为LS,而A部位的Fe3 +保持HS至少为136 GPa。 Fe3 +使低于50 GPa的Pv比Mg末端的可压缩性更高,这是因为B位置逐渐发生自旋转变以及晶格压缩。在50-60 GPa的自旋转变完成后,体积模量增加,密度没有变化。这种弹性变化可能是用于研究与Fe3 +相关的成分异质性的有用的地震探针。

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