论文标题
光环模型是预测固有比对的多功能工具
The halo model as a versatile tool to predict intrinsic alignments
论文作者
论文摘要
星系的固有比对(IAS)是宇宙剪切研究的重要污染物,但是信号对源星系样品的依赖性使建模变得复杂。在本文中,我们使用Halo模型形式主义来捕获这种多样性,并检查其对III和IV期宇宙剪切探测的影响。我们考虑了大小规模上不同的IA特征,以及中央/卫星和红色/蓝色星系的不同贡献,我们使用逼真的模拟来说明星系群的特征作为红移的函数。我们使用最新的观察结果为我们的模型提供了告知:我们在大小和小尺度上都包括光度依赖性,以及光环中信号的径向依赖性。我们预测了总IA信号对镜头角功率谱的影响,包括IA最适合的当前不确定性以说明对镜头信号的可能影响的范围:缺乏flainter星系的限制是我们对IA信号预测的不确定性的主要来源。我们研究了有限自由度的有效模型如何解释IA信号的复杂性。尽管这些导致了第三阶段调查可忽略不计的偏见,但我们发现,对于阶段IV调查,至少要包含一个捕获红移依赖性的附加参数。
Intrinsic alignments (IAs) of galaxies are an important contaminant for cosmic shear studies, but the modelling is complicated by the dependence of the signal on the source galaxy sample. In this paper, we use the halo model formalism to capture this diversity and examine its implications for Stage-III and Stage-IV cosmic shear surveys. We account for the different IA signatures at large and small scales, as well for the different contributions from central/satellite and red/blue galaxies, and we use realistic mocks to account for the characteristics of the galaxy populations as a function of redshift. We inform our model using the most recent observational findings: we include a luminosity dependence at both large and small scales and a radial dependence of the signal within the halo. We predict the impact of the total IA signal on the lensing angular power spectra, including the current uncertainties from the IA best-fits to illustrate the range of possible impact on the lensing signal: the lack of constraints for fainter galaxies is the main source of uncertainty for our predictions of the IA signal. We investigate how well effective models with limited degrees of freedom can account for the complexity of the IA signal. Although these lead to negligible biases for Stage-III surveys, we find that, for Stage-IV surveys, it is essential to at least include an additional parameter to capture the redshift dependence.