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首页> 外文期刊>The Astrophysical journal >CONSTRAINTS ON THE EQUATION OF STATE OF DARK ENERGY AND THE HUBBLE CONSTANT FROM STELLAR AGES AND THE COSMIC MICROWAVE BACKGROUND
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CONSTRAINTS ON THE EQUATION OF STATE OF DARK ENERGY AND THE HUBBLE CONSTANT FROM STELLAR AGES AND THE COSMIC MICROWAVE BACKGROUND

机译:恒星年龄和宇宙微波背景下的暗能量状态方程和哈勃常数约束

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摘要

We place constraints on the redshift-averaged, effective value of the equation of state of dark energy, w, using only the absolute ages of Galactic stars and the observed position of the first peak in the angular power spectrum of the cosmic microwave background (CMB). We find w < -0.8 at the 68% confidence level. If we further consider that w ≥ -1, this finding suggests that within our uncertainties, dark energy is indistinguishable from a classical vacuum energy term. We detect a correlation between the ages of the oldest galaxies and their redshift. This opens up the possibility of measuring w(z) by computing the relative ages of the oldest galaxies in the universe as a function of redshift, dz/dt. We show that this is a realistic possibility by computing dz/dt at z ~ 0 from Sloan Digital Sky Survey (SDSS) galaxies and obtain an independent estimate for the Hubble constant, H_0 = 69 +- 12 km s~(-1) Mpc~(-1). The small number of galaxies considered at z > 0.2 does not yield, currently, a precise determination of w(z), but shows that the age-redshift relation is consistent with a standard ACDM universe with w = - 1.
机译:我们仅使用银河星的绝对年龄和宇宙微波背景(CMB)的角功率谱中观察到的第一个峰的位置,对暗能量状态方程w的红移平均有效值施加约束。 )。我们发现在68%的置信水平下w <-0.8。如果我们进一步考虑w≥-1,则该发现表明,在我们的不确定性范围内,暗能量与经典真空能项没有区别。我们检测到最老的星系的年龄与其红移之间的相关性。通过计算宇宙中最老的星系的相对年龄(作为红移的函数dz / dt的函数),开辟了测量w(z)的可能性。我们通过计算斯隆数字天空测量(SDSS)星系的z〜0处的dz / dt来证明这是一个现实的可能性,并获得哈勃常数H_0 = 69 +-12 km s〜(-1)Mpc的独立估计〜(-1)。 z> 0.2时考虑的少数星系目前尚无法精确确定w(z),但表明年龄-红移关系与w =-1的标准ACDM宇宙一致。

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