论文标题

宇宙学与宽场红外调查望远镜 - 与鲁宾天文台遗产的协同作用

Cosmology with the Wide-Field Infrared Survey Telescope -- Synergies with the Rubin Observatory Legacy Survey of Space and Time

论文作者

Eifler, Tim, Simet, Melanie, Krause, Elisabeth, Hirata, Christopher, Huang, Hung-Jin, Fang, Xiao, Miranda, Vivian, Mandelbaum, Rachel, Doux, Cyrille, Heinrich, Chen, Huff, Eric, Miyatake, Hironao, Hemmati, Shoubaneh, Xu, Jiachuan, Rogozenski, Paul, Capak, Peter, Choi, Ami, Dore, Olivier, Jain, Bhuvnesh, Jarvis, Mike, MacCrann, Niall, Masters, Dan, Rozo, Eduardo, Spergel, David N., Troxel, Michael, von der Linden, Anja, Wang, Yun, Weinberg, David H., Wenzl, Lukas, Wu, Hao-Yi

论文摘要

我们探讨了空间宽大红外调查望远镜(WFIRST)与地面的鲁宾天文台遗产调查(LSST)之间的协同作用。特别是,我们考虑了一种场景,即当前设想的WFIRST高纬度调查(HLS)的调查策略,即在四个狭窄的光度带中的2000平方度改变了一个较小的策略,以结合一个频段的LSST区域的快速覆盖(以完全LSST深度)结合了一个策略。我们发现,在W波段中进行的5个月WFIRS调查可以覆盖完整的LSST调查区域,可提供高分辨率成像,占LSST年10年级Gold Galaxy样品的95%。我们探索了第二个,更雄心勃勃的场景,其中WFIRST花费了1。5年的时间来覆盖LSST地区。在第二种情况下,我们通过关节弱透镜和星系聚类分析对状态参数的暗能量方程的约束功率进行量化,并将其与仅LSST的调查以及参考WFIRST HLS调查进行比较。我们的调查模拟基于烛台目录的WFIRST曝光时间计算器和红移分布。我们的统计不确定性解释了密度场的高阶相关性,我们包括各种系统效应,例如形状和红移测量的不确定性,以及对天体物理系统学的不确定性进行建模,例如银河系偏见,固有的银河系比对等物理学。假设有5个月的WFIRT宽场景,我们发现与LSST Y10(FOM(WWIDE)= 2.4 FOM(LSST))相比,联合LSST+WFIRST宽的调查的约束功率显着增加,与LSST+LSST+WFIRS(FOM(wwide)= 5.5 FOM(wwide)= 5.5 FOM(HLS))。

We explore synergies between the space-based Wide-Field Infrared Survey Telescope (WFIRST) and the ground-based Rubin Observatory Legacy Survey of Space and Time (LSST). In particular, we consider a scenario where the currently envisioned survey strategy for WFIRST's High Latitude Survey (HLS), i.e., 2000 square degrees in four narrow photometric bands is altered in favor of a strategy that combines rapid coverage of the LSST area (to full LSST depth) in one band. We find that a 5-month WFIRST survey in the W-band can cover the full LSST survey area providing high-resolution imaging for >95% of the LSST Year 10 gold galaxy sample. We explore a second, more ambitious scenario where WFIRST spends 1.5 years covering the LSST area. For this second scenario we quantify the constraining power on dark energy equation of state parameters from a joint weak lensing and galaxy clustering analysis, and compare it to an LSST-only survey and to the Reference WFIRST HLS survey. Our survey simulations are based on the WFIRST exposure time calculator and redshift distributions from the CANDELS catalog. Our statistical uncertainties account for higher-order correlations of the density field, and we include a wide range of systematic effects, such as uncertainties in shape and redshift measurements, and modeling uncertainties of astrophysical systematics, such as galaxy bias, intrinsic galaxy alignment, and baryonic physics. Assuming the 5-month WFIRST wide scenario, we find a significant increase in constraining power for the joint LSST+WFIRST wide survey compared to LSST Y10 (FoM(Wwide)= 2.4 FoM(LSST)) and compared to LSST+WFIRST HLS (FoM(Wwide)= 5.5 FoM(HLS)).

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