论文标题

遥远的前景和普朗克衍生的哈勃常数

Distant foreground and the Planck-derived Hubble constant

论文作者

Yershov, V. N., Raikov, A. A., Lovyagin, N. Yu., Kuin, N. P. M., Popova, E. A.

论文摘要

可以通过考虑通过考虑在较遥远的外乳外质量来源周围的一些媒介中的媒介来污染CMB来减少宇宙参数$ h_0 $ $ h_0 $ $ h_0 $的局部测量和从$ planck $测量中得出的值之间的差异。尽管很遥远,但是相对于CMB,这种介质仍然会位于前景,并且作为任何其他前景,它都会改变CMB功率谱。这可能导致CMB温度波动的分散。通过生成一些具有不同分散的CMB的随机样本,我们检查了增加的色散导致较小的估计值$ H_0 $,其余的宇宙学模型参数仍固定。这可能解释了相对于本地测量值$ Planck $衍生的参数$ H_0 $的降低值。本文的作者先前报道了SNE追踪的CMB遥远前景的签名 - 我们发现SN红移,$ z _ {\ rm sn} $与SNE位置的CMB温度波动之间的相关性,$ t _ {\ rm sn} $。在这里,我们使用了回归行的斜率$ t _ {\ rm sn} \,/\,/\,z _ {\ rm sn} $对应于不同的{\ it planck}波带,以估计远处的外层状培养基的可能温度,结果显示出非常低的较低的温度。这种介质中最有可能的成分是粗粒($灰色$)的灰尘,除了使远程远程外层次源变暗的效果外,已知几乎无法检测到。

It is possible to reduce the discrepancy between the local measurement of the cosmological parameter $H_0$ and the value derived from the $Planck$ measurements of the Cosmic Microwave Background (CMB) by considering contamination of the CMB by emission from some medium around distant extragalactic sources, such as extremely cold coarse-grain dust. Though being distant, such a medium would still be in the foreground with respect to the CMB, and, as any other foreground, it would alter the CMB power spectrum. This could contribute to the dispersion of CMB temperature fluctuations. By generating a few random samples of CMB with different dispersions, we have checked that the increased dispersion leads to a smaller estimated value of $H_0$, the rest of the cosmological model parameters remaining fixed. This might explain the reduced value of the $Planck$-derived parameter $H_0$ with respect to the local measurements. The signature of the distant foreground in the CMB traced by SNe was previously reported by the authors of this paper -- we found a correlation between the SN redshifts, $z_{\rm SN}$, and CMB temperature fluctuations at the SNe locations, $T_{\rm SN}$. Here we have used the slopes of the regression lines $T_{\rm SN}\,/\,z_{\rm SN}$ corresponding to different {\it Planck} wave bands in order to estimate the possible temperature of the distant extragalactic medium, which turns out to be very low, about 5\,K. The most likely ingredient of this medium is coarse-grain ($grey$) dust, which is known to be almost undetectable, except for the effect of dimming remote extragalactic sources.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源