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Repercussions of Structure Emergence on the CMB Polarization

机译:CMB极化结构出现的影响

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Acoustic oscillations in the early universe, jumpstarted by superhorizon fluctuations left behind by inflation, give rise to a series of coherent peaks in the spatial power spectrum of the cosmic microwave background (CMB). An inevitable consequence of this scenario is that the CMB photons are left with small polarization anisotropies. Polarization patterns may be separated by parity into E-modes and B-modes; acoustic oscillations give rise only to E-modes. A recent detection of the E-modes agrees well with predictions. Many experiments are poised to make further measurements of E-modes, and to begin searching for B-modes, which should arise at subdegree scales because of weak lensing deflections of the original E-modes en route to the observer. At larger angular scales, gravitational waves from inflation could produce B-modes. Experimental prospects are outlined.
机译:早期宇宙中的声学振荡,通过通胀留下的超吸收波动开始,在宇宙微波背景(CMB)的空间功率谱中产生一系列相干峰值。这种情况的不可避免的结果是CMB光子留下小极化各向异性。偏振图案可以通过奇偶校验分离成E模式和B模式;声学振荡仅引起E模式。最近检测到的电子模式与预测很好。许多实验都准备进一步测量E模式,并且开始搜索B模式,这应该在Subdegree尺度上产生,因为原始E模式的透镜偏转偏转到观察者的途中。在较大的角度尺度上,来自充气的引力波可以产生B模式。概述了实验前景。

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