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Detecting primordial gravitational waves with circular polarization of the redshifted 21 cm line. II. Forecasts

机译:用红星21cm线的圆极化检测原始重力波。 II。 预测

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摘要

In the first paper of this series, we showed that the CMB quadrupole at high redshifts results in a small circular polarization of the emitted 21 cm radiation. In this paper we forecast the sensitivity of future radio experiments to measure the CMB quadrupole during the era of first cosmic light (z ~ 20). The tomographic measurement of 21 cm circular polarization allows us to construct a 3D remote quadrupole field. Measuring the B-mode component of this remote quadrupole field can be used to put bounds on the tensor-to-scalar ratio r. We make Fisher forecasts for a future Fast Fourier Transform Telescope (FFTT), consisting of an array of dipole antennas in a compact grid configuration, as a function of array size and observation time. We find that a FFTTwith a side length of 100 km can achieve σ(r) ~ 4 × 10~(?3) after ten years of observation and with a sky coverage f_(sky) ~ 0.7. The forecasts are dependent on the evolution of the Lyman-α flux in the pre-reionization era, that remains observationally unconstrained. Finally, we calculate the typical order of magnitudes for circular polarization foregrounds and comment on their mitigation strategies. We conclude that detection of primordial gravitational waves with 21 cm observations is in principle possible, so long as the primordial magnetic field amplitude is small, but would require a very futuristic experiment with corresponding advances in calibration and foreground suppression techniques.
机译:在本系列的第一种纸张中,我们表明高射频时的CMB四极轴导致发射的21cm辐射的小圆形偏振。在本文中,我们预测未来无线电实验的灵敏度在第一宇宙光(Z〜20)的时代期间测量CMB四极杆。 21厘米圆极化的断层测量允许我们构建3D远程四极杆字段。测量此远程四极杆字段的B模式分量可用于将界限上的界限放置在张量与标量r上。我们使Fisher预测未来的快速傅里叶变换望远镜(FFTT),包括一系列偶极天线,如紧凑型电网配置,作为阵列大小和观察时间的函数。我们发现,在观察十年的观察和天空覆盖范围内,FFTTwith可以实现100公里的一侧长度可以实现σ(r)〜4×10〜(?3),使用sky覆盖率f_(sky)〜0.7。预测依赖于在预抗原时代的Lyman-α通量的演变,其仍然是观察到的无约束。最后,我们计算循环极化前景的典型量级,并评论其缓解策略。我们得出结论,使用21cm观测的原始重力检测原则上是原则上,只要原始磁场幅度很小,而且需要一个非常未来的实验,校准和前景抑制技术的相应进步。

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