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X-ray emission spectroscopy with a laser-heated diamond anvil cell: a new experimental probe of the spin state of iron in the Earth's interior

机译:带有激光加热的金刚石砧盒的X射线发射光谱学:地球内部铁的自旋态的新实验探针

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摘要

Synchrotron-based X-ray emission spectroscopy (XES) is well suited to probing the local electronic structure of 3d transition metals such as Fe and Mn in their host phases. The laser-heated diamond anvil cell technique is uniquely capable of generating ultra-high static pressures and temperatures in excess of 100 GPa and 3000 K. Here X-ray emission spectroscopy and X-ray diffraction have been interfaced with the laser-heated diamond cell for studying the electronic spin states of iron in magnesiowustite-(Mg-0.75, Fe-0.25) O and its crystal structure under lower-mantle conditions. X-ray emission spectra of the ferrous iron in a single crystal of magnesiowustite-(Mg-0.75, Fe-0.25) O indicate that a high-spin to low-spin transition of ferrous iron occurs at 54 to 67 GPa and 300 K and the ferrous iron remains in the high-spin state up to 47 GPa and 1300 K. This pilot study points to the unique capability of the synchrotron-based XES and X-ray diffraction techniques for addressing the issue of electronic spin transition or crossover in 3d transition metals and compounds under extreme high-P-T conditions.
机译:基于同步加速器的X射线发射光谱(XES)非常适合探测3d过渡金属(如Fe和Mn)在其主体相中的局部电子结构。激光加热的金刚石砧盒技术独特地能够产生超过100 GPa和3000 K的超高静态压力和温度。此处,X射线发射光谱和X射线衍射已与激光加热的金刚石电池相连接研究在低地幔条件下镁在镁铝铁矿-(Mg-0.75,Fe-0.25)O中的电子自旋态及其晶体结构。菱镁矿-(Mg-0.75,Fe-0.25)O单晶中亚铁的X射线发射光谱表明,在54至67 GPa和300 K时,亚铁发生了高旋向低旋转变。黑色金属保持高达47 GPa和1300 K的高自旋状态。这项先导研究指出了基于同步加速器的XES和X射线衍射技术解决3d电子自旋跃迁或交叉问题的独特能力极端高PT条件下的过渡金属和化合物。

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