论文标题
对Alicpt-1的原始引力波检测管道的性能预测
Performance forecasts for the primordial gravitational wave detection pipelines for AliCPT-1
论文作者
论文摘要
Alicpt是第一个中国宇宙微波背景(CMB)实验,它将在北半球对CMB极化进行最精确的测量。 ALICPT的关键科学目标是检测原始引力波(PGWS)。众所周知,在早期宇宙中,宇宙通货膨胀的时代可以产生PGW,这在CMB上留下了奇特的奇偶校验$ b $ - 模式极化的形式。在这项工作中,我们研究了组件分离和参数估计管道的性能,以限制张量比比率的值。基于一个观察季节的模拟数据,我们将五个不同的管道与不同的工作原理进行比较。三个管道在估算清洁光谱的$ r $之前,在地图或光谱级别执行组件分离,而其他两个管道则对前景参数和$ r $均构成全球拟合。我们还测试了不同的方法来说明时间流滤波系统的影响。这项工作表明,我们的管道对张量比比率和一致的灵敏度$σ(r)\ sim 0.02 $提供了一致且可靠的约束。这展示了使用Alicpt-1的精确$ b $ mode极化测量的潜力。 ALICPT将为检测PGW提供强大的机会,这与南半球的各种基于地面的CMB实验相辅相成。
AliCPT is the first Chinese cosmic microwave background (CMB) experiment which will make the most precise measurements of the CMB polarization in the northern hemisphere. The key science goal for AliCPT is the detection of primordial gravitational waves (PGWs). It is well known that an epoch of cosmic inflation, in the very early universe, can produce PGWs, which leave an imprint on the CMB in form of odd parity $B$-mode polarization. In this work, we study the performance of the component separation and parameter estimation pipelines in context of constraining the value of the tensor-to-scalar ratio. Based on the simulated data for one observation season, we compare five different pipelines with different working principles. Three pipelines perform component separation at map or spectra level before estimating $r$ from the cleaned spectra, while the other two pipelines performs a global fit for both foreground parameters and $r$. We also test different methods to account for the effects of time stream filtering systematics. This work shows that our pipelines provide consistent and robust constraints on the tensor-to-scalar ratio and a consistent sensitivity $σ(r) \sim 0.02$. This showcases the potential of precise $B$-mode polarization measurement with AliCPT-1. AliCPT will provide a powerful opportunity to detect PGWs, which is complementary with various ground-based CMB experiments in the southern hemisphere.