论文标题

CMB $ b $ mode的修订估计值是由斑点电源引起的

Revised estimates of CMB $B$-mode polarization induced by patchy reionization

论文作者

Roy, Anirban, Kulkarni, Girish, Meerburg, P. Daniel, Challinor, Anthony, Baccigalupi, Carlo, Lapi, Andrea, Haehnelt, Martin G.

论文摘要

通过CMB中的$ B $模式极化模式寻找原始引力波是当前和未来CMB实验的主要目标之一。除前景外,此搜索中的潜在障碍是各向异性$ b $ mode极化,该极化是由斑点宇宙学回报过程中产生的cmb光子散射产生的。由于电离历史上的不确定性,对这些次要各向异性的强大预测是具有挑战性的。在本文中,我们通过通过观察Lyman-$α$ Forest的观察来了解电离引起的$ b $ mmode信号的估计。为了得出这些$ b $ mmode的估计值,我们使用高动力范围的辐射转移模拟的电离仿真,这些模拟被校准为ly $α$数据。这些仿真也与各种其他高红移观察结果一致。我们发现,在多尔斯$ \ ell \大约100 $周围,回离引起$ b $ mmode功率,$ \ ell(\ ell+1)c_ \ ell^{bb}/2π\大约4 \ times 10^{ - 6} { - 6} \,μ$ k $^2 $。因此,该次级信号是在原始信号的水平上,张张量比比率$ r <10^{ - 4} $,如果由高度集群的源质量来源的质量为$ \ sim 10^{11} $ m $ $ $ _ $ $ _ \ odot $。我们的发现表明,对于当前计划的CMB实验而言,斑驳的电离对寻找原始引力波的贡献不太可能是一个关注点。

The search for primordial gravitational waves through the $B$-mode polarization pattern in the CMB is one of the major goals of current and future CMB experiments. Besides foregrounds, a potential hurdle in this search is the anisotropic secondary $B$-mode polarization generated by the scattering of CMB photons off free electrons produced during patchy cosmological reionization. Robust predictions of these secondary anisotropies are challenging because of uncertainties in the reionization history. In this paper, we revise estimates of the reionization-induced $B$-mode signal by incorporating recent advances in the understanding of reionization through observations of the Lyman-$α$ forest. To derive these $B$-mode estimates, we use high-dynamic-range radiative transfer simulations of reionization that are calibrated to the Ly$α$ data. These simulations are also consistent with a variety of other high-redshift observations. We find that around multipoles $\ell\approx 100$, reionization induces $B$-mode power with $\ell(\ell+1)C_\ell^{BB}/2π\approx 4\times 10^{-6}\,μ$K$^2$. This secondary signal is thus at the level of the primordial signal with the tensor-to-scalar ratio $r<10^{-4}$, and can increase by a factor of $\sim 50$ if reionization is sourced by highly clustered sources residing in haloes with mass of $\sim 10^{11}$ M$_\odot$. Our findings suggest that the contribution of patchy reionization to the search for primordial gravitational waves is unlikely to be a concern for currently planned CMB experiments.

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