论文标题

通过头囊振幅验证的哈勃恒定恒定测量的准确性

The Accuracy of the Hubble Constant Measurement Verified through Cepheid Amplitudes

论文作者

Riess, Adam G., Yuan, Wenlong, Casertano, Stefano, Macri, Lucas M., Scolnic, Dan

论文摘要

在恒星拥挤的情况下,用外层状头膜测得的哈勃常数的精度取决于强大的光度法和背景估计。传统的方法是通过在Cepheids附近的采样背景来拥挤,并假设它们与它们的位置相匹配。我们表明,未解决的源头在头寸站点的拥挤是其光曲线的分数幅度的减少。我们使用一个简单的分析表达式直接从3个SNE〜IA宿主中> 200个头孢虫的光曲线振幅和NGC 4258中直接推断出拥挤,如HST所观察到的,这是第一个超出麦芽岩云的近红外振幅。在当地拥挤最低的地方,我们发现在同一时期的近红外振幅与银河系相匹配。在较大的恒星密度下,我们发现经验测量的幅度与从当地区域进行的传统方式评估的拥挤度相匹配(没有自由参数),从而确认了它们估计Cepheeid位置的背景的准确性。外乳外的头孢菌振幅需要比测量的小约20%,以表明H_0中当前差异的主要来源,这是额外的,无法识别的拥挤。相反,我们发现振幅数据将CEPHEID背景的系统错误估计为0.029 +/- 0.037 mag,比目前的〜0.2 Mag张力小5倍以上。我们得出的结论是,在头部背景中的系统错误不能为哈勃张力提供合理的分辨率。

The accuracy of the Hubble constant measured with extragalactic Cepheids depends on robust photometry and background estimation in the presence of stellar crowding. The conventional approach accounts for crowding by sampling backgrounds near Cepheids and assuming they match those at their positions. We show a direct consequence of crowding by unresolved sources at Cepheid sites is a reduction in the fractional amplitudes of their light curves. We use a simple analytical expression to infer crowding directly from the light curve amplitudes of >200 Cepheids in 3 SNe~Ia hosts and NGC 4258 as observed by HST -- the first near-infrared amplitudes measured beyond the Magellanic Clouds. Where local crowding is minimal, we find near-infrared amplitudes match Milky Way Cepheids at the same periods. At greater stellar densities we find that the empirically measured amplitudes match the values predicted (with no free parameters) from crowding assessed in the conventional way from local regions, confirming their accuracy for estimating the background at the Cepheid locations. Extragalactic Cepheid amplitudes would need to be ~20% smaller than measured to indicate additional, unrecognized crowding as a primary source of the present discrepancy in H_0. Rather we find the amplitude data constrains a systematic mis-estimate of Cepheid backgrounds to be 0.029 +/- 0.037 mag, more than 5x smaller than the size of the present ~0.2 mag tension in H_0. We conclude that systematic errors in Cepheid backgrounds do not provide a plausible resolution to the Hubble tension.

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