论文标题

对宇宙时间的星系的光学SED恒星质量估计的系统错误及其对宇宙学的影响

Systematic errors on optical-SED stellar mass estimates for galaxies across cosmic time and their impact on cosmology

论文作者

Paulino-Afonso, A., González-Gaitán, S., Galbany, L., Mourão, A. M., Angus, C. R., Smith, M., Anderson, J. P., Lyman, J. D., Kuncarayakti, H., Rodrigues, M. A.

论文摘要

在不同的宇宙时期研究星系需要几种观察效应,需要考虑这些效应,以一致地比较较大时间范围的种群。我们使用了一个附近的166个星系样本,这些样本托有IA型超新星(SNE IA),并通过有趣的调查观察到了整体场谱缪斯。在这里,我们介绍了宿主恒星质量中系统错误和偏差的研究,红移的越来越多,这些升高在SNE IA宇宙学分析中通常被忽略了。我们使用四个光度带(GRIZ,类似于暗能量调查SN程序)在不同的红移(0.1 <z <2.0)上模拟观测值,然后在宇宙时间估算宿主星系性能。我们发现,由于我们朝着更高的红移,恒星质量被系统地低估了,这主要是由于不同的休息框波长覆盖范围,差异在z〜1时达到0.3 DEX。我们已经使用新得出的校正作为红移的函数来校正已知的SN IA宿主样本的恒星质量并得出宇宙学参数。我们表明,这些校正对衍生的宇宙学参数的影响很小。受影响最大的是质量步骤$Δ_M$的值,该值减少了$ \ sim $ 0.004(降低6%)。状态参数$ W $的暗能量方程将变化$ΔW\ sim $ 0.006(高0.6%),$ω_m$的值最多增加0.001($ \ sim $ 0.3%),所有这些都在模型的派生不确定性范围内。尽管在主机恒星质量估计中发现的系统错误并未显着影响衍生的宇宙学参数,但它是系统误差的重要来源,当我们进入精确宇宙学的新时代时,应该纠正它。

Studying galaxies at different cosmic epochs entails several observational effects that need to be taken into account to compare populations across a large time span in a consistent manner. We use a sample of 166 nearby galaxies that hosted type Ia supernovae (SNe Ia) and have been observed with the integral field spectrograph MUSE through the AMUSING survey. Here, we present a study of the systematic errors and bias in the host stellar mass with increasing redshifts that are generally overlooked in SNe Ia cosmological analyses. We simulate observations at different redshifts (0.1<z<2.0) using four photometric bands (griz, similar to the Dark Energy Survey-SN program) to then estimate the host galaxy properties across cosmic time. We find that stellar masses are systematically underestimated as we move towards higher redshifts, due mostly to different rest-frame wavelength coverage, with differences reaching 0.3 dex at z~1. We have used the newly derived corrections as a function of redshift to correct the stellar masses of a known sample of SN Ia hosts and derive cosmological parameters. We show that these corrections have a small impact on the derived cosmological parameters. The most affected is the value of the mass step $Δ_M$, which is reduced by $\sim$0.004 (6% lower). The dark energy equation of state parameter $w$ changes by $Δw \sim $0.006 (0.6% higher) and the value of $Ω_m$ increases at most by 0.001 ($\sim$0.3%), all within the derived uncertainties of the model. While the systematic error found in the estimate of the host stellar mass does not significantly affect the derived cosmological parameters, it is an important source of a systematic error that one should correct for as we enter a new era of precision cosmology.

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