...
首页> 外文期刊>Meteoritics & planetary science >Noble gas isotopic fractionation between solar wind and the Sun, And implications for Genesis solar wind oxygen measurements
【24h】

Noble gas isotopic fractionation between solar wind and the Sun, And implications for Genesis solar wind oxygen measurements

机译:太阳风和太阳之间的稀有气体同位素分馏,以及对创世纪太阳风氧气测量的意义

获取原文
获取原文并翻译 | 示例
           

摘要

We urge that He is the best case for a meaningful estimation of solar composition without measurement of solar wind (SW) composition; the value of such an estimation is that it may then be compared to the actual measurements, thereby leading to an empirical constraint on the degree of isotopic fractionation arising in SW and thence to how much fractionation may have affected the SW composition of other elements. We take primordial ~3He/~4He to be as identified in the so-called Q component identified in meteoritic materials. In the Sun, however, ~3He/~4He is higher because of the augmentation of 3He by D-burning, the nuclear conversion of primordial deuterium. After accounting for the D-converted ~3He, we estimate ~3He/~4He in the present Sun (post-D burning He), and then, from the difference between this and the ~3He/~4He found in Genesis SW, we estimate the isotopic fractionation between them. Then, from noble gas systematics, we show that Genesis SW noble gases may be related to Q-noble gases by a mass-dependent Rayleigh-type fractionation. We develop a kinetic description of isotopic fractionation of minor components in SW relative to the solar atmosphere, which is consistent with the Rayleigh-type fractionation. This predicts fractionation in the O mass range, which is significantly different from the value used by Heber et al. (2011). The latter value corresponds to the premise that Ca-Al-rich inclusion O is the same as solar O, whence this work does not support that premise.
机译:我们敦促He是在不测量太阳风(SW)成分的情况下有意义地估算太阳成分的最佳案例;这种估计的价值在于可以将其与实际测量值进行比较,从而导致对西南部同位素同位素分馏程度的经验约束,并因此限制了多少分馏会影响其他元素的西南半球成分。我们将原始的〜3He /〜4He定义为陨石中所谓的Q分量。然而,在太阳下,〜3He /〜4He更高,这是由于D燃烧(原始氘的核转化)增加了3He。在考虑了D转换后的〜3He之后,我们估计了当前太阳下(〜D燃烧后的He)的〜3He /〜4He,然后根据与创世记中发现的〜3He /〜4He之间的差异,我们得出估计它们之间的同位素分数。然后,从稀有气体系统学中,我们证明了创世SW稀有气体可能通过质量相关的瑞利型分馏与Q稀有气体相关。我们开发了相对于太阳大气中西南微量组分的同位素分馏的动力学描述,这与瑞利型分馏是一致的。这可以预测O质量范围内的分馏,这与Heber等人使用的值显着不同。 (2011)。后一个值对应于这样的前提,即富含Ca-Al的夹杂物O与太阳O相同,因此这项工作不支持该前提。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号