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首页> 外文期刊>The Astrophysical Journal. Letters >THE RADIAL METALLICITY GRADIENTS IN THE MILKY WAY THICK DISK AS FOSSIL SIGNATURES OF A PRIMORDIAL CHEMICAL DISTRIBUTION
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THE RADIAL METALLICITY GRADIENTS IN THE MILKY WAY THICK DISK AS FOSSIL SIGNATURES OF A PRIMORDIAL CHEMICAL DISTRIBUTION

机译:银河系碟状化学分布的化石特征的径向金属梯度

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摘要

In this Letter we examine the evolution of the radial metallicity gradient induced by secular processes, in the disk of an N-body Milky Way-like galaxy. We assign a [Fe/H] value to each particle of the simulation according to an initial, cosmologically motivated, radial chemical distribution and let the disk dynamically evolve for ~6 Gyr. This direct approach allows us to take into account only the effects of dynamical evolution and to gauge how and to what extent they affect the initial chemical conditions. The initial [Fe/H] distribution increases with R in the inner disk up to R ≈ 10 kpc and decreases for larger R. We find that the initial chemical profile does not undergo major transformations after ~6 Gyr of dynamical evolution. The final radial chemical gradients predicted by the model in the solar neighborhood are positive and of the same order as those recently observed in the Milky Way thick disk. We conclude that (1) the spatial chemical imprint at the time of disk formation is not washed out by secular dynamical processes and (2) the observed radial gradient may be the dynamical relic of a thick disk originated from a stellar population showing a positive chemical radial gradient in the inner regions.
机译:在这封信中,我们研究了由N体银河系星系盘中的世俗过程引起的径向金属性梯度的演变。我们根据宇宙学动机下的初始径向化学分布为模拟的每个粒子分配[Fe / H]值,并让磁盘动态演化约6 Gyr。这种直接的方法允许我们仅考虑动力学演化的影响,并评估它们如何以及在多大程度上影响初始化学条件。初始[Fe / H]分布随内盘中的R增大而增大,直至R≈10 kpc,而对于较大的R减小。我们发现,初始化学分布在动态演化〜6 Gyr之后没有经历重大转变。该模型预测的在太阳附近的最终径向化学梯度是正的,并且与最近在银河系厚盘中观测到的那些梯度相同。我们得出的结论是:(1)盘形成时的空间化学烙印未被世俗的动力学过程冲刷掉;(2)观察到的径向梯度可能是源自恒星种群的厚盘的动态遗迹,显示出正的化学物质。内部区域的径向梯度。

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