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Exploring compensated isocurvature perturbations with CMB spectral distortion anisotropies

机译:用CMB光谱失真各向异性探索补偿的等沟扰动

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We develop a linear perturbation theory for the spectral y-distortions of the cosmic microwave background (CMB). The y-distortions generated during the recombination epoch are usually negligible because the energy transfer due to the Compton scattering is strongly suppressed at that time, but they can be significant if there is a considerable amount of compensated isocurvature perturbation (CIP), which is not tightly constrained from the present CMB observations. The linear y-distortions explicitly depend on the baryon density fluctuations, therefore y anisotropies can completely resolve the degeneracy between the baryon isocurvature perturbations and the cold dark matter ones. This novel method is free from lensing contaminations that can affect the previous approach to the CIPs based on the nonlinear modulation of the CMB anisotropies. We compute the cross correlation functions of the y-distortions with the CMB temperature and the E mode polarization anisotropies. They are sensitive to the correlated CIPs parameterized by f' ≡ P_(CIPζ) /P_(ζζ) with Pζζ and P_(CIPζ) being the auto correlation of the adiabatic perturbations and the cross correlation between them and the CIPs. We investigate how well the y anisotropies will constrain f'in future observations such as those provided by a PIXIE-like and a PRISM-like survey, LiteBIRD and a cosmic variance limited (CVL) survey, taking into account the degradation in constraining power due to the presence of Sunyaev Zel'dovich effect from galaxy clusters. For example, our forecasts show that it is possible to achieve an upper limit of f'< 2 × 10~5 at 68% C.L. with LiteBIRD, and f'< 2 × 10~4 with CVL observations.
机译:我们为宇宙微波背景(CMB)的光谱y-畸变开发了线性扰动理论。在重组时代期间产生的Y-畸变通常是可忽略不计的,因为当时康普顿散射引起的能量传递受到强烈抑制,但如果存在相当大量的补偿等区扰动(CIP),它们可能是显着的从现在的CMB观察中严格约束。直线y-畸变明确取决于重孔密度波动,因此y各向异性可以完全解决细分异细感觉扰动和冷暗物质扰动之间的退化。这种新方法没有透镜污染,可以基于CMB各向异性的非线性调制来影响前一个接近CIP的方法。我们将Y失真与CMB温度和E模式偏振各向异性分子计算的横相关函数计算。它们对由F'P_(CIPH)/ P_(ζζ)参数化的相关CIP敏感,具有Pζζ和p_(cipζ)是绝热扰动的自动相关性和它们之间的交叉相关性和码头。我们调查y各向异性将如何限制F'IN的未来观察,例如由像素样和棱镜的调查,Litebird和宇宙差异有限公司(CVL)调查所提供的观察,考虑到所得的限制电力的劣化从银河系中存在Sunyaev zel'dovich的效果。例如,我们的预测表明,在68%C.L中可以实现F'<2×10〜5的上限。用Litebird,以及CVL观测的F'<2×10〜4。

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