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Constraints on Cosmology and Baryonic Feedback with the Deep Lens Survey Using Galaxy–Galaxy and Galaxy–Mass Power Spectra

机译:使用银河系-银河系和银河系-大功率光谱的深透镜测量对宇宙学和重子反馈的约束

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We present cosmological parameter measurements from the Deep Lens Survey (DLS) using galaxy–mass and galaxy–galaxy power spectra in the multipole range ??=?250–2000. We measure galaxy–galaxy power spectra from two lens bins centered at z?~?0.27 and 0.54 and galaxy–mass power spectra by cross-correlating the positions of galaxies in these two lens bins with galaxy shapes in two source bins centered at z?~?0.64 and 1.1. We marginalize over a baryonic feedback process using a single-parameter representation and a sum of neutrino masses, as well as photometric redshift and shear calibration systematic uncertainties. For a flat ΛCDM cosmology, we determine , in good agreement with our previous DLS cosmic shear and the Planck cosmic microwave background (CMB) measurements. Without the baryonic feedback marginalization, S 8 decreases by because the dark-matter-only power spectrum lacks the suppression at the highest ? values owing to active galactic nucleus (AGN) feedback. Together with the Planck CMB measurements, we constrain the baryonic feedback parameter to , which suggests an interesting possibility that the actual AGN feedback might be stronger than the recipe used in the OverWhelmingly Large cosmological hydrodynamical Simulations. The interpretation is limited by the validity of the baryonic feedback simulation and the one-parameter representation of the effect.
机译:我们介绍了使用多极范围?? =?250-2000范围内的星系质量和银河系功率谱进行的深透镜测量(DLS)的宇宙学参数测量。我们通过将两个透镜仓中的星系位置与两个光源仓中的星系形状互相关来测量这两个透镜仓中以z?〜?0.27和0.54为中心的星系-星系功率谱,并测量星系-质量倍率谱。 〜?0.64和1.1。我们利用单参数表示和中微子质量的总和以及光度红移和剪切定标系统不确定性对重反馈过程进行边缘化处理。对于平直的CDM宇宙学,我们确定了与我们以前的DLS宇宙剪切和普朗克宇宙微波本底(CMB)测量非常一致的结果。在没有重音反馈边缘化的情况下,S 8减小了,这是因为仅暗物质的功率谱在最高ω处缺乏抑制。值归因于活跃的银河核(AGN)反馈。与Planck CMB测量一起,我们将重子反馈参数约束为,这表明了一个有趣的可能性,即实际AGN反馈可能比绝大多数宇宙流体动力学模拟中使用的方法更强。该解释受重音反馈模拟的有效性和效果的一参数表示的限制。

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