论文标题
从lofar的$ \ boldsymbol {z \ 9.1} $的中性氢的21厘米信号功率谱上的上限提高了上限
Improved upper limits on the 21-cm signal power spectrum of neutral hydrogen at $\boldsymbol{z \approx 9.1}$ from LOFAR
论文作者
论文摘要
基于使用低频阵列(Lofar)获得的141小时数据,提出了21厘米信号功率谱的新上限,以$ z \ 9.1 $的红移约为9.1 $。该分析包括频谱光滑增益校准,高斯过程回归(GPR)前景缓解和最佳加权功率谱推断的显着改善。以前由于增益溶液中的光谱结构而引起的“过量功率”已显着降低,但某些过量功率仍然存在与热噪声不同的光谱相关性。该过量的光谱连贯量表为$ 0.25-0.45 $ \,MHz,并且在夜晚之间部分相关,尤其是在前景楔形区域。夜晚之间的相关性更强,涵盖了类似的当地恒星时代。最好的2- $σ$上限为$δ^2_ {21} <(73)^2 \,\ mathrm {mk^2} $ at $ k = 0.075 \,\ MATHRM {h \,cmpc^{ - 1}} $,发现了一个因子$ \ 8 $ \ y 8 $ $ \ y 8 $ $ \ y 8 $ $ h.剩余的过量功率可能是由于源的残留前景发射或远离相中心,极化泄漏,色度校准误差,电离层或低级射频频率干扰造成的。我们讨论了信号处理链的未来改进,这些改进可以进一步减少甚至消除过多功率的原因。
A new upper limit on the 21-cm signal power spectrum at a redshift of $z \approx 9.1$ is presented, based on 141 hours of data obtained with the Low-Frequency Array (LOFAR). The analysis includes significant improvements in spectrally-smooth gain-calibration, Gaussian Process Regression (GPR) foreground mitigation and optimally-weighted power spectrum inference. Previously seen `excess power' due to spectral structure in the gain solutions has markedly reduced but some excess power still remains with a spectral correlation distinct from thermal noise. This excess has a spectral coherence scale of $0.25 - 0.45$\,MHz and is partially correlated between nights, especially in the foreground wedge region. The correlation is stronger between nights covering similar local sidereal times. A best 2-$σ$ upper limit of $Δ^2_{21} < (73)^2\,\mathrm{mK^2}$ at $k = 0.075\,\mathrm{h\,cMpc^{-1}}$ is found, an improvement by a factor $\approx 8$ in power compared to the previously reported upper limit. The remaining excess power could be due to residual foreground emission from sources or diffuse emission far away from the phase centre, polarization leakage, chromatic calibration errors, ionosphere, or low-level radio-frequency interference. We discuss future improvements to the signal processing chain that can further reduce or even eliminate these causes of excess power.