论文标题

来自射线星系裂片的宇宙分布的非热次级CMB各向异性

The non-thermal secondary CMB anisotropies from a cosmic distribution of radio galaxy lobes

论文作者

Acharya, Sandeep Kumar, Majumdar, Subhabrata, Nath, Biman B.

论文摘要

当前和即将到来的高角度分辨率和多频实验已很好地探索次级CMB各向异性的丰富景观。在这种情况下,我们首次计算了CMB波动的功率谱,从不断发展的巨大射线星系的宇宙学分布中。我们还明确考虑了非热电子分布,这对CMB角功率谱的推断具有重要意义。我们计算平均的全局非热Y-Distort,\ ynt。为了观察到合理的射流光度分布,在$ 10^{45} -10^{47} $ ergs $^{ - 1} $的范围内,我们发现\ ynt的小于$ 10^{ - 5} $,因此并不违反COBE限制。使用非热SZ的唯一频谱依赖性,我们表明,从未来的像素样实验中,可以在$ \ gtrsim5σ$的水平上进行检测,只要我们精确地了解前景。从无线电Lobes峰值$ \ ell \ sim 3000 $,带有振幅$ \ sim 1 \%的Thermal SZ Power Spectrum的Thermal SZ Power Spectrum的总非电压SZ功率谱,$ c^{nt} _ \ ell $。 $ c^{nt} _ \ ell $的检测,具有像小精灵的灵敏度实验,可以导致$ \ sim5σ$约束对喷气机的质量依赖性的约束,至少对提议的更雄心勃勃的CMB-HD调查变得更好,至少可以更好地限制约束。此外,这将导致对中央黑洞质量 - 宿主光环质量缩放关系的最严重约束。

Current and upcoming high angular resolution and multi-frequency experiments are well poised to explore the rich landscape of secondary CMB anisotropies. In this context, we compute for the first time, the power spectrum of CMB fluctuations from a cosmological distribution of evolving lobes of giant radio galaxies. We, also, explicitly take into account the non-thermal electron distribution, which has important implications for the inference of the CMB angular power spectrum. We calculate the mean global non-thermal y-distortion, \ynt. For observationally reasonable distribution of the jet luminosities in the range of $10^{45}-10^{47}$ ergs$^{-1}$, we find \ynt to be less than $10^{-5}$, and hence not violating the COBE limit as previously claimed. Using the unique spectral dependence of the non-thermal SZ, we show that a detection of \ynt can be within reach at the level of $\gtrsim 5σ$ from a future PIXIE-like experiment provided we understand the foregrounds precisely. The total non-thermal SZ power spectrum, $C^{NT}_\ell$, from the radio lobes peaks at $\ell \sim 3000$ with an amplitude $\sim 1\%$ of thermal SZ power spectrum from galaxy clusters. A a detection of the $C^{NT}_\ell$, with a PIXIE-like sensitivity experiment, can lead to $\sim 5σ$ constraint on the mass dependence of the jet luminosity with the constraint becoming, at least, ten times better for the proposed more ambitious CMB-HD survey. This will, further, lead to the tightest constrain on the central black hole mass -to- host halo mass scaling relations.

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