论文标题

球状簇M15和M30中恒星质量功能的径向变化:非标准IMF的线索?

Radial variation of the stellar mass functions in the globular clusters M15 and M30: clues of a non-standard IMF?

论文作者

Cadelano, Mario, Dalessandro, Emanuele, Webb, Jeremy J., Vesperini, Enrico, Lattanzio, Daniele, Beccari, Giacomo, Gomez, Matias, Monaco, Lorenzo

论文摘要

我们利用高分辨率哈勃太空望远镜和宽场ESO-VLT观测值组合,以研究全球质量函数(Alphag)及其径向变化(Alpha(r))的斜率,这是两个密集,巨大的,巨大的和核心循环倒流的球状球形簇M15和M30。可用的数据集样品簇的主序列降至0.2 mSUN,光度法完整性允许研究从中央区域到其潮汐半径的0.40 msun和0.75 msun之间的质量功能。我们发现,两个群集在alpha(r)中均与集中距离的函数相似。它们都表现出中央区域的α(R)的陡峭变化,然后在郊区达到了几乎恒定的价值。这种行为可以解释为由质量分离和损失过程驱动的系统的长期动力学演变的结果。我们将这些结果与一组直接的N体模拟进行了比较,发现它们只能在动力学年龄(T/TRH)下重现观察到的alpha(R)和Alphag的值,其明显大于从两个群集的观察到的性质中得出的值。我们研究了导致这种差异的可能的物理机制,并认为这两个簇可能是出于非标准(扁平/底部平移)初始质量功能的出生。

We exploit a combination of high-resolution Hubble Space Telescope and wide-field ESO-VLT observations to study the slope of the global mass function (alphaG) and its radial variation (alpha(r)) in the two dense, massive and post core-collapse globular clusters M15 and M30. The available data-set samples the clusters' Main Sequence down to 0.2 Msun and the photometric completeness allows the study of the mass function between 0.40 Msun and 0.75 Msun from the central regions out to their tidal radii. We find that both clusters show a very similar variation in alpha(r) as a function of clustercentric distance. They both exhibit a very steep variation in alpha(r) in the central regions, which then attains almost constant values in the outskirts. Such a behavior can be interpreted as the result of long-term dynamical evolution of the systems driven by mass-segregation and mass-loss processes. We compare these results with a set of direct N-body simulations and find that they are only able to reproduce the observed values of alpha(r) and alphaG at dynamical ages (t/trh) significantly larger than those derived from the observed properties of both clusters. We investigate possible physical mechanisms responsible for such a discrepancy and argue that both clusters might be born with a non-standard (flatter/bottom-lighter) initial mass function.

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