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Overview of the magnetic properties experiments on the Mars Exploration Rovers

机译:火星探测漫游者的磁性能实验概述

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The Mars Exploration Rovers have accumulated airborne dust on different types of permanent magnets. Images of these magnets document the dynamics of dust capture and removal over time. The strongly magnetic subset of airborne dust appears dark brown to black in Panoramic Camera (Pancam) images, while the weakly magnetic one is bright red. Images returned by the Microscopic Imager reveal the formation of magnetic chains diagnostic of magnetite-rich grains with substantial magnetization (>8 Am~2 kg~(-1)). On the basis of Мossbauer spectra the dust contains magnetite, olivine, pyroxene, and nanophase oxides in varying proportions, depending on wind regime and landing site. The dust contains a larger amount of ferric iron (Fe~(3+)/Fe_(tot) ~0.6) than rocks in the Gusev plains (~0. 1-0.2) or average Gusev soil (~0.3). Alpha Particle X-Ray Spectrometer data of the dust show that some of the iron in magnetite is substituted by titanium and chromium. The good correlation of the amount of calcium and sulfur in the dust may be caused by the presence of a calcium sulfate related phase. The overall mineralogical composition points to a basaltic origin of the airborne dust, although some alteration has taken place as indicated by the large degree of oxidation.
机译:火星探测漫游者已经在不同类型的永磁体上积累了空气中的尘埃。这些磁铁的图像记录了粉尘随时间推移的捕获和清除动态。空中尘埃的强磁性子集在全景相机(Pancam)图像中显示为深棕色至黑色,而弱磁性的子集则为鲜红色。显微成像仪返回的图像揭示了磁化程度高的富磁铁矿晶粒的磁链诊断结果(> 8 Am〜2 kg〜(-1))。根据Мossbauer光谱,粉尘包含不同比例的磁铁矿,橄榄石,辉石和纳米相氧化物,具体取决于风况和着陆点。与古塞夫平原(〜0。1-0.2)或普通古塞夫土壤(〜0.3)中的岩石相比,粉尘中含有更多的三价铁(Fe〜(3 +)/ Fe_(tot)〜0.6)。尘埃的Alpha粒子X射线光谱仪数据显示,磁铁矿中的某些铁被钛和铬替代。灰尘中钙和硫含量的良好相关性可能是由硫酸钙相关相的存在引起的。总体的矿物组成指向了空气中尘埃的玄武岩成因,尽管发生了一些变化,如高度氧化所表明的。

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