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首页> 外文期刊>The Astrophysical journal >MEASURING BARYON ACOUSTIC OSCILLATIONS WITH MILLIONS OF SUPERNOVAE
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MEASURING BARYON ACOUSTIC OSCILLATIONS WITH MILLIONS OF SUPERNOVAE

机译:用数以千计的超新星测量巴利翁声振动

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摘要

Since Type Ia supernovae (SNe) explode in galaxies, they can, in principle, be used as the same tracer of the large-scale structure as their hosts to measure baryon acoustic oscillations (BAOs). To realize this, one must obtain a dense integrated sampling of SNe over a large fraction of the sky, which may only be achievable photometrically with future projects such as the Large Synoptic Survey Telescope. The advantage of SN BAOs is that SNe have more uniform luminosities and more accurate photometric redshifts than galaxies, but the disadvantage is that they are transitory and hard to obtain in large number at high redshift. We find that a half-sky photometric SN survey to redshift z = 0.8 is able to measure the baryon signature in the SN spatial power spectrum. Although dark energy constraints from SN BAOs are weak, they can significantly improve the results from SN luminosity distances of the same data, and the combination of the two is no longer sensitive to cosmic microwave background priors.
机译:由于Ia型超新星(SNe)在星系中爆炸,因此它们在原理上可以用作测量其重子声振荡(BAO)的主机的大型结构的示踪剂。要实现这一目标,必须在很大一部分天空上获得密集的SNe集成采样,这只能通过未来的项目(例如大型天气观测望远镜)以光度法实现。 SN BAO的优点是SNe比星系具有更均匀的光度和更精确的光度红移,但缺点是它们短暂且难以在高红移下大量获得。我们发现,半天空光度学SN调查到红移z = 0.8能够测量SN空间功率谱中的重子特征。尽管来自SN BAO的暗能量约束很弱,但它们可以显着改善来自相同数据的SN光度距离的结果,并且两者的组合不再对宇宙微波背景先验敏感。

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