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(Un)true deuterium abundance in the Galactic disk

机译:(联合国)银河系盘的真实氘丰富

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Deuterium has a special place in cosmology, nuclear astrophysics, and galactic chem-ical evolution, because of its unique property that it is only created in the big bang nucleosyn-thesis while all other processes result in its net destruction. For this reason, among other things, deuterium abundance measurements in the interstellar medium (ISM) allow us to determine the fraction of interstellar gas that has been cycled through stars, and set constraints and learn about different Galactic chemical evolution (GCE) models. However, recent indications that deu-terium might be preferentially depleted onto dust grains complicate our understanding about the meaning of measured ISM deuterium abundances. For this reason, recent estimates by Linsky et al. (2006) have yielded a lower bound to the "true", undepleted, ISM deuterium abundance that is very close to the primordial abundance, indicating a small deuterium astration factor contrary to the demands of many GCE models. To avoid any prejudice about deuterium dust depletion along different lines of sight that are used to determine the "true" D abundance, we propose a model-independent, statistical Bayesian method to address this issue and determine in a model-independent mariner the undepleted ISM D abundance. We find the best estimate for the gas-phase ISM deuterium abundance to be (D/H)_(ISM)≥ (2.0 + 0.1) x 10~(-5).Presented are the results of Prodanovic et al. (2009).
机译:氘是宇宙学,核天体物理学和银河系中的特殊的地方,因为它独特的财产,它仅在大爆炸核象上创造,而所有其他过程导致其净销毁。因此,在其他事情之外,星际介质(ISM)中的氘丰度测量允许我们确定通过恒星循环的星际气体的分数,并设定限制,并了解不同的银河化学进化(GCE)模型。然而,最近的迹象表明Deu-itium可能优先耗尽到尘埃粒中,使我们对测量ISM氘丰富的含义复杂化。因此,Linsky等人最近的估计。 (2006)已经产生了较低的“真实”,未征收,ISM氘丰富,其非常接近原始丰富,表明违反了许多GCE模型的需求的小氘的含量因素。为了避免沿着用于确定“真实”大量的不同视线的氘粉尘耗尽的任何偏见,我们提出了一个模型 - 独立的统计贝叶斯方法来解决这个问题,并确定独立于模型的海军船只未删除的ISM D丰富。我们发现含有(D / H)_(ISM)≥(2.0 + 0.1)×10〜( - 5)的最佳估计.presented是Prodanovic等人的结果。 (2009)。

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