论文标题

二头肌 /凯克XVII:视线失真分析:重力镜头,各向异性宇宙双折射,斑点的回报和系统错误的估计值

BICEP / Keck XVII: Line of Sight Distortion Analysis: Estimates of Gravitational Lensing, Anisotropic Cosmic Birefringence, Patchy Reionization, and Systematic Errors

论文作者

Keck Collaboration, Ade, P. A. R., Ahmed, Z., Amiri, M., Barkats, D., Thakur, R. Basu, Beck, D., Bischoff, C. A., Bock, J. J., Boenish, H., Bullock, E., Buza, V., Cheshire IV, J. R., Connors, J., Cornelison, J., Crumrine, M., Cukierman, A., Denison, E. V., Dierickx, M., Duband, L., Eiben, M., Fatigoni, S., Filippini, J. P., Fliescher, S., Giannakopoulos, C., Goeckner-Wald, N., Goldfinger, D. C., Grayson, J., Grimes, P., Halal, G., Hall, G., Halpern, M., Hand, E., Harrison, S., Henderson, S., Hildebrandt, S. R., Hubmayr, J., Hui, H., Irwin, K. D., Kang, J., Karkare, K. S., Karpel, E., Kefeli, S., Kernasovskiy, S. A., Kovac, J. M., Kuo, C. L., Lau, K., Leitch, E. M., Lennox, A., Megerian, K. G., Minutolo, L., Moncelsi, L., Nakato, Y., Namikawa, T., Nguyen, H. T., O'Brient, R., Ogburn IV, R. W., Palladino, S., Petroff, M. A., Prouve, T., Pryke, C., Racine, B., Reintsema, C. D., Richter, S., Schillaci, A., Schmitt, B. L., Schwarz, R., Sheehy, C. D., Singari, B., Soliman, A., Germaine, T. St, Steinbach, B., Sudiwala, R. V., Teply, G. P., Thompson, K. L., Tolan, J. E., Tucker, C., Turner, A. D., Umilta, C., Verges, C., Vieregg, A. G., Wandui, A., Weber, A. C., Wiebe, D. V., Willmert, J., Wong, C. L., Wu, W. L. K., Yang, H., Yoon, K. W., Young, E., Yu, C., Zeng, L., Zhang, C., Zhang, S.

论文摘要

我们介绍了从Bicep2,Bicep3和Keck Array获取的95 GHz和150 GHz数据得出的视线扭曲场的估计值,直到2018年观察季节,导致了宇宙学的约束以及对工具和天文学系统的研究。宇宙学的约束源自有关大规模结构的重力镜头的三个失真场,磁场或类似轴的磁场的极化旋转以及斑块电离的筛选效果。我们测量镜头功率谱的振幅$ a_l^{ϕ ϕ} = 0.95 \ pm 0.20 $。我们限制了极化旋转,表示为Chern-simons电磁项$ g_ {aγ} \ leq 2.6 \ times 10^{ - 2}/h_i $的耦合常数,其中$ h_i $是通货膨胀率高于1 mm b_ pripordial磁场的通货膨胀hubble参数,并在1 mpc $ b _ pripordial磁场上\ leq 6.6 \; \ text {ng} $在95 GHz处。我们以一个简单的“皱纹表面”模型的斑点电源模型来限制光学深度波动的均方根,以找到$ a^τ<0.19 $($2σ$)的相干刻度的$ a^τ<0.19 $($2σ$)。我们表明,95 GHz和150 GHz极化图的所有失真场都与模拟一致,包括镜头$λ$ CDM,灰尘和噪声,没有仪器系统学的证据。在某些情况下,此处介绍的EB和TB二次估计量比我们以前基于MAP的NULL测试更敏感,该测试在识别和拒绝由仪器效应引起的虚假B模型方面进行了。最后,我们验证了二头肌/凯克数据处理中的标准删除滤波,可有效地去除温度到极化泄漏。

We present estimates of line-of-sight distortion fields derived from the 95 GHz and 150 GHz data taken by BICEP2, BICEP3, and Keck Array up to the 2018 observing season, leading to cosmological constraints and a study of instrumental and astrophysical systematics. Cosmological constraints are derived from three of the distortion fields concerning gravitational lensing from large-scale structure, polarization rotation from magnetic fields or an axion-like field, and the screening effect of patchy reionization. We measure an amplitude of the lensing power spectrum $A_L^{ϕϕ}=0.95 \pm 0.20$. We constrain polarization rotation, expressed as the coupling constant of a Chern-Simons electromagnetic term $g_{aγ} \leq 2.6 \times 10^{-2}/H_I$, where $H_I$ is the inflationary Hubble parameter, and an amplitude of primordial magnetic fields smoothed over 1 Mpc $B_{1\text{Mpc}} \leq 6.6 \;\text{nG}$ at 95 GHz. We constrain the root mean square of optical-depth fluctuations in a simple "crinkly surface" model of patchy reionization, finding $A^τ<0.19$ ($2σ$) for the coherence scale of $L_c=100$. We show that all of the distortion fields of the 95 GHz and 150 GHz polarization maps are consistent with simulations including lensed-$Λ$CDM, dust, and noise, with no evidence for instrumental systematics. In some cases, the EB and TB quadratic estimators presented here are more sensitive than our previous map-based null tests at identifying and rejecting spurious B-modes that might arise from instrumental effects. Finally, we verify that the standard deprojection filtering in the BICEP/Keck data processing is effective at removing temperature to polarization leakage.

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