论文标题

在无线电和光学宇宙学调查之间的协同作用约束重力

Constraining gravity with synergies between radio and optical cosmological surveys

论文作者

Casas, Santiago, Carucci, Isabella P., Pettorino, Valeria, Camera, Stefano, Martinelli, Matteo

论文摘要

在这项工作中,我们介绍了对重力的参数修改的更新预测,这些预测可以捕获超过$λ$ cdm的宇宙密度扰动行为的偏差。对于这些预测,我们采用SKA天文台(SKAO)作为无线电频率下未来宇宙学调查的基准,结合了一项连续调查,用于弱透镜和角度星系聚类与HI Galaxy Computsing与光谱星系聚类的HI Galaxy调查,可检测Baryonsoctic oscoustic振荡和红色的红色速度空间。此外,我们还添加了21厘米HI强度映射,该映射在更高的红移下提供了宝贵的信息,并可以补充层析成像分辨率,从而使我们能够探测改良的重力模型的红移依赖性偏差。对于其中一些情况,我们将探针与其他光学调查(例如暗能量光谱仪器(DESI)和Vera C. rubin天文台(VRO)相结合)。我们表明,这样的协同作用是消除可观察到的非线性和小规模建模中的系统效果和脱落的强大工具。总体而言,我们发现所有SKAO无线电探针的组合都将能够约束函数的参数偏差的现值,从$λ$ CDM($μ$和$μ$和$σ$),精度为$ 2.7 \%$ $ $ $和$ 1.8 \%$ $ $ 1.8 \%$ $,与标准模型和重力相互作用的约束竞争,我们已经在重力上进行了竞争。在探索放射光学的协同作用时,我们发现Vro与Skao的组合可以在$μ$和$σ$(分别为$ 0.9 \%$和$ 0.7 \%$ $)上产生非常紧密的约束,当包括强度映射和Desi Galaxies之间的交叉相交时,这些结合将进一步改善。

In this work we present updated forecasts on parameterised modifications of gravity that can capture deviations of the behaviour of cosmological density perturbations beyond $Λ$CDM. For these forecasts we adopt the SKA Observatory (SKAO) as a benchmark for future cosmological surveys at radio frequencies, combining a continuum survey for weak lensing and angular galaxy clustering with an HI galaxy survey for spectroscopic galaxy clustering that can detect baryon acoustic oscillations and redshift space distortions. Moreover, we also add 21cm HI intensity mapping, which provides invaluable information at higher redshifts, and can complement tomographic resolution, thus allowing us to probe redshift-dependent deviations of modified gravity models. For some of these cases, we combine the probes with other optical surveys, such as the Dark Energy Spectroscopic Instrument (DESI) and the Vera C. Rubin Observatory (VRO). We show that such synergies are powerful tools to remove systematic effects and degeneracies in the non-linear and small-scale modelling of the observables. Overall, we find that the combination of all SKAO radio probes will have the ability to constrain the present value of the functions parameterising deviations from $Λ$CDM ($μ$ and $Σ$) with a precision of $2.7\%$ and $1.8\%$ respectively, competitive with the constraints expected from optical surveys and with constraints we have on gravitational interactions in the standard model. Exploring the radio-optical synergies, we find that the combination of VRO with SKAO can yield extremely tight constraints on $μ$ and $Σ$ ($0.9\%$ and $0.7\%$ respectively), which are further improved when the cross-correlation between intensity mapping and DESI galaxies is included.

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