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Isotopic and elemental fractionation of solar wind implanted in the Genesis concentrator target characterized and quantified by noble gases

机译:注入创世纪选矿厂目标中的太阳风的同位素和元素分馏,并通过稀有气体进行定量

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摘要

We report concentrations and isotopic compositions of He, Ne, and Ar measured with high spatial resolution along a radial traverse of a silicon carbide (SiC) quadrant of the Genesis mission concentrator target. The Ne isotopic composition maps instrumental fractionation as a function of radial position in the target: the maximum observed isotopic fractionation is approximately 33‰ per mass unit between the center and periphery. The Ne fluence is enhanced by a factor of 43 at the target center and decreases to 5.5 times at the periphery relative to the bulk solar wind fluence. Neon isotopic profiles measured along all four arms of the "gold cross" mount which held the quadrants in the concentrator target demonstrate that the concentrator target was symmetrically irradiated during operation as designed. We used implantation experiments of Ne into SiC and gold to quantify backscatter loss and isotopic fractionation and compared measurements with numerical simulations from the code "stopping and range of ions in matter." The 20Ne fluence curve as a function of radial distance on the target may be used to construct concentration factors relative to bulk solar wind for accurate corrections for solar wind fluences of other light elements to be measured in the concentrator target. The Ne isotopic composition as a function of the radial distance in the SiC quadrant provides a correction for the instrumental mass-dependent isotopic fractionation by the concentrator and can be used to correct measured solar wind oxygen and nitrogen isotopic compositions to obtain bulk solar wind isotopic compositions.
机译:我们报告了沿着创世纪任务集中器目标的碳化硅(SiC)象限的径向遍历以高空间分辨率测量的He,Ne和Ar的浓度和同位素组成。 Ne同位素组成将仪器分馏映射为目标中径向位置的函数:观察到的最大同位素分馏在中心和外围之间约为每质量单位33‰。相对于整体太阳风能量密度,Ne能量密度在目标中心提高了43倍,而在外围降低到5.5倍。沿“四角交叉”支架的所有四个臂(将象限保持在集中器靶中)测量的氖同位素剖面表明,在设计过程中,集中器靶受到了对称照射。我们使用了向SiC和金中注入Ne的实验,以量化反向散射损耗和同位素分馏,并将测量结果与来自“物质的离子的终止和作用范围”代码的数值模拟进行比较。靶上径向距离的函数的20Ne能量通量曲线可用于构建相对于整体太阳风的浓度因子,以精确校正要在聚光器目标中测量的其他轻元素的太阳风通量。 Ne同位素组成随SiC象限中径向距离的变化提供了对集中器对仪器的质量相关同位素分馏的校正,可用于校正测得的太阳风中氧和氮同位素组成以获得大量太阳风中同位素组成。

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