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Characterization and calibration of the CheMin mineralogical instrument on Mars Science Laboratory

机译:火星科学实验室的CheMin矿物仪器的表征和校准

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A principal goal of the Mars Science Laboratory (MSL) rover Curiosity is to identify and characterize past habitable environments on Mars. Determination of the mineralogical and chemical composition of Martian rocks and soils constrains their formation and alteration pathways, providing information on climate and habitability through time. The CheMin X-ray diffraction (XRD) and X-ray fluorescence (XRF) instrument on MSL will return accurate mineralogical identifications and quantitative phase abundances for scooped soil samples and drilled rock powders collected at Gale Crater during Curiosity's 1-Mars-year nominal mission. The instrument has a Co X-ray source and a cooled charge-coupled device (CCD) detector arranged in transmission geometry with the sample. CheMin's angular range of 5 to 50 2θ with <0.35 2θ resolution is sufficient to identify and quantify virtually all minerals. CheMin's XRF requirement was descoped for technical and budgetary reasons. However, X-ray energy discrimination is still required to separate Co Kα from Co Kβ and Fe Kα photons. The X-ray energy-dispersive histograms (EDH) returned along with XRD for instrument evaluation should be useful in identifying elements Z>13 that are contained in the sample. The CheMin XRD is equipped with internal chemical and mineralogical standards and 27 reusable sample cells with either Mylar? or Kapton? windows to accommodate acidic-to-basic environmental conditions. The CheMin flight model (FM) instrument will be calibrated utilizing analyses of common samples against a demonstration-model (DM) instrument and CheMin-like laboratory instruments. The samples include phyllosilicate and sulfate minerals that are expected at Gale crater on the basis of remote sensing observations.
机译:火星科学实验室(MSL)漫游者“好奇号”的主要目标是识别和表征火星上过去的宜居环境。确定火星岩石和土壤的矿物学和化学组成会限制其形成和蚀变途径,从而提供有关气候和可居住性的信息。 MSL上的CheMin X射线衍射(XRD)和X射线荧光(XRF)仪器将返回好奇号1年火星年度标称任务期间在Gale Crater收集的sc取的土壤样品和钻探的岩粉的准确矿物学鉴定和定量相丰度。该仪器具有一个Co X射线源和一个与样品成透射几何形状排列的冷电荷耦合器件(CCD)检测器。 CheMin的5至502θ的角度范围,分辨率小于0.352θ,足以识别和量化几乎所有矿物。 CheMin的XRF要求由于技术和预算原因而被取消了范围。但是,仍然需要X射线能量识别才能将CoKα与CoKβ和FeKα光子分离。 X射线能量色散直方图(EDH)与XRD一起返回以进行仪器评估,对于识别样品中所含元素Z> 13很有用。 CheMin XRD配备了内部化学和矿物学标准品以及27个可重复使用的样品池,其中有一个Mylar?还是卡普顿?适应酸性至碱性环境条件的窗户。 CheMin飞行模型(FM)仪器将利用对普通样品的分析和示范模型(DM)仪器以及类似CheMin的实验室仪器进行校准。样品包括基于遥感观测预计在大风火山口形成的层状硅酸盐和硫酸盐矿物。

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