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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Characterisation of the magnetic iron phases in Clovis Class rocks in Gusev crater from the MER Spirit Mossbauer spectrometer
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Characterisation of the magnetic iron phases in Clovis Class rocks in Gusev crater from the MER Spirit Mossbauer spectrometer

机译:利用MER Spirit Mossbauer光谱仪表征Gusev火山口中Clovis类岩石中的磁性铁相

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Mossbauer backscattering spectra of eight Martian rocks, acquired by the MIMOS II spectrometer of Rover Spirit (MERA) and containing goethite in addition to other iron minerals, have been selected for in-depth numerical analysis. Where feasible, different temperature windows for a given rock were considered. A novel calibration/folding procedure, exclusively based on the fitted positions of the eight prominent absorption lines in the transmission spectra of the reference target and not relying on the error signal of the MIMOS 11 spectrometer, has been developed. It is demonstrated that this procedure yields reliable and reasonably accurate values for the adjusted Mossbauer parameters of the respective spectra of the rock targets. These spectra are all composed of magnetically split components arising from hematite, magnetite and goethite phases, in addition to a ferrous and a ferric doublet that can be ascribed to the presence of Fe silicates, possibly glasses. It is argued that the Fe (3+) doublet has no significant contribution from superparamagnetic Fe-oxide particles. The hematite components reflect the coexistence of antiferromagnetic and weakly ferromagnetic spin states. In general the magnetite content in the selected rocks is low. The goethite subspectra are very broad and asymmetric and need to be described by a model-independent distribution of hyperfine fields. The as-such obtained parameter values indicate an average particle size of the order of 10 nm. For all examined rock spectra, the adjusted parameter values for the various Fe oxides are completely in line with those known for terrestrial (natural or synthetic) species. (C) 2007 Elsevier Ltd. All rights reserved.
机译:已选择由Rover Spirit(MERA)的MIMOS II光谱仪获得的八块火星岩石的Mossbauer背向散射光谱,除了其他铁矿物质外还含有针铁矿,以进行深入的数值分析。在可行的情况下,考虑给定岩石的不同温度窗口。已经开发了一种新颖的校准/折叠程序,该程序仅基于参考目标的透射光谱中的八个突出吸收线的拟合位置,而不依赖于MIMOS 11光谱仪的误差信号。证明了该程序对于岩石目标的各个光谱的已调整的Mossbauer参数产生可靠且合理准确的值。这些光谱全部由赤铁矿,磁铁矿和针铁矿相中产生的磁裂成分组成,此外还可以归因于铁硅酸盐(可能是玻璃)的存在的亚铁和三重铁。有人认为,超顺磁性Fe-氧化物颗粒对Fe(3+)双峰没有明显的贡献。赤铁矿成分反映了反铁磁和弱铁磁自旋状态的共存。通常,所选岩石中的磁铁矿含量较低。针铁矿亚谱非常宽且不对称,需要用与模型无关的超精细场分布来描述。如此获得的参数值指示10nm量级的平均粒度。对于所有检查的岩石光谱,各种铁氧化物的调整参数值与陆生(天然或合成)物种的调整参数值完全一致。 (C)2007 Elsevier Ltd.保留所有权利。

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