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ABSOLUTE AGES OF GLOBULAR CLUSTERS AND THE AGE OF THE UNIVERSE

机译:球团的绝对时代和宇宙时代

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摘要

The main-sequence turnoff luminosity is the best stellar "clock" which can be used to determine the absolute ages of globular clusters. This is due to the fact that the luminosity and lifetimes of main-sequence globular cluster stars are nearly independent of the properties of stellar atmospheres and envelope convection, two areas of stellar evolution which are poorly understood. Several possible sources of error in this stellar clock are discussed, and isochrones are constructed using a variety of different physical assumptions. The mean age of the oldest globular clusters is determined from these isochrones, and it is found that the uncertainties in the input physics can lead to changes in the derived age of ± 15%. Surprisingly the largest source of error is the mixing-length theory of convection. It is well known that uncertainties in the distance scale and chemical composition of globular cluster stars lead to changes of order 25% in the determination of absolute ages. Combining the various sources of error, the absolute age of the oldest globular clusters are found to lie in the range 11-21 Gyr. This is meant to be a total theoretical range. For the standard inflationary model (Ω = 1, Λ = 0), a minimum age of the universe of 11 Gyr requires H_0 approx < 60 km s~(-1) Mpc~(-1).
机译:主序列的截止亮度是最好的恒星“时钟”,可以用来确定球状星团的绝对年龄。这是由于以下事实:主序球状星团的发光度和寿命几乎与恒星大气和包壳对流的性质无关,恒星对流是两个尚不清楚的恒星演化区域。讨论了该恒星时钟中的几种可能的误差源,并使用各种不同的物理假设构造了等时线。从这些等时线可以确定最老的球状星团的平均年龄,并且发现输入物理的不确定性可能导致派生年龄的变化为±15%。令人惊讶的是,最大的误差来源是对流混合长度理论。众所周知,在确定绝对年龄时,球状星团的距离尺度和化学成分的不确定性会导致25%的变化。结合各种错误源,发现最老的球状星团的绝对年龄在11-21 Gyr范围内。这应该是整个理论范围。对于标准的膨胀模型(Ω= 1,Λ= 0),最小宇宙年龄11 Gyr需要H_0约<60 km s〜(-1)Mpc〜(-1)。

著录项

  • 来源
    《The Astrophysical journal》 |1995年第1pt2期|p.L9-L12|共4页
  • 作者

    BRIAN CHABOYER;

  • 作者单位

    Canadian Institute for Theoretical Astrophysics, 60 St. George Street, Toronto, Ontario, Canada M5S 1A7;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;
  • 关键词

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