论文标题
使用21厘米速度振荡测量宇宙膨胀速率
Measuring the cosmic expansion rate using 21-cm velocity acoustic oscillations
论文作者
论文摘要
暗物质 - 巴里元相对速度场中的波动被印在宇宙黎明期间21 cm功率谱中的声学振荡(CD)。这些速度声学振荡(VAO)保持了共同声音范围的烙印。在Muñoz的先前作品中,已经证明可以将这些VAO视为标准统治者,以通过考虑各种Lyman-Werner反馈强度和前景污染方案来衡量高红移的宇宙扩张率。在这里,我们通过使用公共代码\ texttt {21cmfast}的修改版本扩展该分析。我们使用此代码在21 cm的功率谱中模拟VAO,并预测有可能用HERA Radio望远镜约束$ h(z)$的潜力,并考虑到Lyman-$α$加热,Lyman-Werner反馈和前景的影响,对各种天体物理学参数的依赖性,以及与宇宙学参数的依赖性。我们发现,在不同的天体物理和前景场景下,可以用HERA $ h(z)$在$ \ sim 0.3-6 \%$相对准确度中测量$ 11 <z <20 $,而普朗克宇宙学参数在$ \ sim 0.08-0.2 \%0.08-0.2 \%$相对级别的地板中设置了不确定性。这种准确性与大多数低红移测量值相当,并且有助于测试持续的``哈勃张力''所激发的各种宇宙学场景。
The fluctuations in the dark matter-baryon relative velocity field are imprinted as acoustic oscillations in the 21-cm power spectrum during cosmic dawn (CD). These velocity acoustic oscillations (VAOs) keep the imprints of the comoving sound horizon scale. In a previous work by Muñoz, it has been demonstrated that these VAOs can be treated as standard rulers to measure the cosmic expansion rate at high redshifts by considering a variety of Lyman-Werner feedback strengths and foreground contamination scenarios. Here we extend that analysis by using a modified version of the public code \texttt{21cmFAST}. We use this code to simulate the VAOs in 21-cm power spectrum and forecast the potential to constrain $H(z)$ with the HERA radio telescope, taking into account the effects of Lyman-$α$ heating, Lyman-Werner feedback and foregrounds, the dependence on various astrophysical parameters, and the degeneracy with cosmological parameters. We find that $H(z)$ can be measured with HERA at $\sim 0.3-6\%$ relative accuracy in the range $11 < z < 20$, under different astrophysical and foreground scenarios, with uncertainties in the Planck cosmological parameters setting a $\sim 0.08-0.2\%$ relative-error floor in the measurement. This accuracy is on par with most low-redshift measurements and can be helpful in testing various cosmological scenarios motivated by the ongoing ``Hubble Tension".