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The total deuterium abundance in the local Galactic disk: decisions and implications

机译:局部银河系中的氘丰富:决策和含义

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Analyses of FUSE spacecraft spectra have provided measurements of D/H in the gas phase of the interstellar medium for many lines of sight extending to several kpc from the Sun. These measurements, together with the earlier Copernicus, HST, and IMAPS data, show a wide range of D/H values that have challenged both observers and chemical evolution modellers. I believe that the best explanation for the diverse D/H measurements is that deuterium can be sequestered on to carbonaceous grains and PAH molecules and thereby removed from the interstellar gas. Grain destruction can raise the gas phase D/H value to approximately the total D/H value. Supernovae and stellar winds, however, can decrease the total D/H value along lines of sight on time scales less than mixing time scales. I will summarize the theoretical and observational arguments for this model and estimate the most likely range for the total D/H in the local Galactic disk. This range in total D/H presents a constraint on realistic Galactic chemical evolution models or the primordial value of D/H or both.
机译:熔丝航天器光谱的分析已经为星际介质的气相中的D / H提供了测量,以便从太阳延伸到几个KPC的许多视线。这些测量与早期的Copernicus,HST和IMAPS数据一起显示出挑战观察者和化学进化模型的广泛的D / H值。我认为,不同的D / H测量的最佳解释是氘可以被隔离成碳质颗粒和PAH分子,从而从外部气体中除去。晶粒损坏可以将气体相位为D / H值提高到大约总D / H值。然而,Supernovae和Stellar Winds可以在比混合时间尺度的时间尺度上沿着视线上的视线沿视线的总D / H值降低。我将总结该模型的理论和观测结果,并估计当地银磁盘中总D / H的最可能范围。总D / H的该范围呈现了现实银河化学进化模型的约束或D / H或两者的原始值。

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