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Colloquium Paper: Primordial nucleosynthesis

机译:专题讨论会论文:原始核合成

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摘要

With the advent of the new extragalactic deuterium observations, Big Bang nucleosynthesis (BBN) is on the verge of undergoing a transformation. In the past, the emphasis has been on demonstrating the concordance of the BBN model with the abundances of the light isotopes extrapolated back to their primordial values by using stellar and galactic evolution theories. As a direct measure of primordial deuterium is converged upon, the nature of the field will shift to using the much more precise primordial D/H to constrain the more flexible stellar and galactic evolution models (although the question of potential systematic error in 4He abundance determinations remains open). The remarkable success of the theory to date in establishing the concordance has led to the very robust conclusion of BBN regarding the baryon density. This robustness remains even through major model variations such as an assumed first-order quark-hadron phase transition. The BBN constraints on the cosmological baryon density are reviewed and demonstrate that the bulk of the baryons are dark and also that the bulk of the matter in the universe is nonbaryonic. Comparison of baryonic density arguments from Lyman-α clouds, x-ray gas in clusters, and the microwave anisotropy are made.
机译:随着新的银河外氘观测的出现,大爆炸核合成(BBN)即将发生转变。过去,重点一直是通过使用恒星和星系演化理论来证明BBN模型与丰富的光同位素外推回其原始值的一致性。随着对原始氘的直接测量的收敛,该领域的性质将转变为使用更精确的原始D / H来约束更灵活的恒星和银河演化模型(尽管中潜在的系统误差问题) 4 他的丰度确定仍未解决)。迄今为止,该理论在建立一致性方面的显著成功已导致BBN关于重子密度的非常可靠的结论。即使通过主要模型变化(例如假定的一阶夸克-强子相变),也仍然具有这种鲁棒性。审查了BBN对宇宙重子密度的约束,并证明了重子的大部分是黑暗的,并且宇宙中的大部分物质 是非重子的。 Lyman-α的重子密度论证的比较 产生云,团簇中的X射线气体以及微波各向异性。

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