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Beyond CMB cosmic variance limits on reionization with the polarized Sunyaev-Zel’dovich effect

机译:超越CMB宇宙方差限制了极化的Sunyaev-zel'dovich效果

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摘要

Upcoming cosmic microwave background (CMB) surveys will soon make the first detection of the polarized Sunyaev-Zel’dovich effect, the linear polarization generated by the scattering of CMB photons on the free electrons present in collapsed objects. Measurement of this polarization along with knowledge of the electron density of the objects allows a determination of the quadrupolar temperature anisotropy of the CMB as viewed from the space-time location of the objects. Maps of these remote temperature quadrupoles have several cosmological applications. Here we propose a newapplication: the reconstruction of the cosmological reionization history. We show that with quadrupole measurements out to redshift 3, constraints on the mean optical depth can be improved by an order of magnitude beyond the CMB cosmic variance limit.
机译:即将举行的宇宙微波背景(CMB)调查将很快发出第一次检测偏振的Sunyaev-zel'dovich效果,通过在折叠物体中存在的自由电子上产生的CMB光子的散射产生的线性极化。 与对象的电子密度的知识一起测量该偏振的测量允许从物体的时空位置观察的CMB的四极olar温度各向异性。 这些远程温度Quadrupoles的地图具有多个宇宙学应用。 在这里,我们提出了一种新应用:宇宙学重历史的重建。 我们表明,对于Redshift 3,通过超越的电流光度测量,可以通过超出CMB宇宙方差限制的大小提高平均光学深度的约束。

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