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首页> 外文期刊>The Astrophysical journal >Lensing and Supernovae: Quantifying the Bias on the Dark Energy Equation of State
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Lensing and Supernovae: Quantifying the Bias on the Dark Energy Equation of State

机译:透镜和超新星:量化暗能量状态方程上的偏差

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摘要

The gravitational magnification and demagnification of Type Ia supernovae (SNe) modify their positions on the Hubble diagram, shifting the distance estimates from the underlying luminosity-distance relation. This can introduce a systematic uncertainty in the dark energy equation of state (EOS) estimated from SNe, although this systematic is expected to average away for sufficiently large data sets. Using mock SN samples over the redshift range 0 z ≤ 1.7, we quantify the lensing bias. We find that the bias on the dark energy EOS is less than half a percent for large data sets (2000 SNe). However, if highly magnified events (SNe deviating by more than 2.5 σ) are systematically removed from the analysis, the bias increases to ~0.8%. Given that the EOS parameters measured from such a sample have a 1 σ uncertainty of 10%, the systematic bias related to lensing in SN data out to z ~ 1.7 can be safely ignored in future cosmological measurements.
机译:Ia型超新星(SNe)的引力放大率和缩小率修改了它们在哈勃图上的位置,从而使潜在的光度-距离关系的距离估计值发生了偏移。这可能会在从SNe估计的暗能量状态方程(EOS)中引入系统性不确定性,尽管对于足够大的数据集,这种系统性预期会逐渐消失。使用红移范围0

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