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IS DEUTERIUM IN HIGH-REDSHIFT LYMAN LIMIT SYSTEMS PRIMORDIAL?

机译:稀土元素高限制稀土元素系统中的氘吗?

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Detections of deuterium in high-redshift Lyman limit absorption systems along the line of sight to QSOs promise to reveal the primordial deuterium abundance. At present, the deuterium abundances (D/H) derived from the very few systems observed are significantly discordant. Assuming the validity of all the data, if this discordance does not reflect intrinsic primordial inhomogeneity, then it must arise from processes operating after the primordial nucleosynthesis epoch. We consider processes that might lead to significant deuterium production or destruction and yet allow the cloud to mimic a chemically unevolved system. These processes include, for example, anomalous/stochastic chemical evolution and D/~4He photodestruction. In general, we find it unlikely that these processes could have significantly altered D/H in Lyman limit clouds. We argue that chemical evolution scenarios, unless very finely tuned, cannot account for significant local deuterium depletion since they tend to overproduce ~(12)C, even when allowance is made for possible outflow. Similarly, D/~4He photodestruction schemes engineered to locally produce or destroy deuterium founder on the necessity of requiring an improbably large γ-ray source density. Future observations of D/H in Lyman limit systems may provide important insight into the initial conditions for the primordial nucleosynthesis process, early chemical evolution, and the galaxy formation process.
机译:在沿QSO视线的高红移Lyman极限吸收系统中检测到氘,有望揭示出原始的氘丰度。目前,从观察到的极少系统中得出的氘丰度(D / H)明显不一致。假设所有数据都是有效的,如果这种不一致不能反映出内在的原始不均一性,那么它必须来自原始核合成时代之后的过程。我们考虑可能导致大量氘产生或破坏的过程,但仍允许云模仿化学未演化的系统。这些过程包括,例如,异常/随机化学演化和D /〜4He光解。通常,我们发现这些过程不太可能显着改变莱曼极限云中的D / H。我们认为,除非经过精心调整,否则化学演化方案无法解释局部氘的严重消耗,因为即使有可能流出的情况,它们也会过量产生〜(12)C。类似地,D /〜4He光解方案设计为局部产生或破坏氘的奠基者,这是因为需要不大可能的γ射线源密度。在莱曼极限系统中对D / H的未来观察可能会为原始核合成过程,早期化学演化和星系形成过程的初始条件提供重要的见识。

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