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Projected Constraints on Modified Gravity Cosmologies from 21 cm Intensity Mapping

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arxiv 0911.3552 v2 pith:BPOKYWOB submitted 2009-11-18 astro-ph.CO

Projected Constraints on Modified Gravity Cosmologies from 21 cm Intensity Mapping

classification astro-ph.CO
keywords intensitymappingsensitiveconstraintsgravitylensingmakesmodel
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present projected constraints on modified gravity models from the observational technique known as 21 cm intensity mapping, where cosmic structure is detected without resolving individual galaxies. The resulting map is sensitive to both BAO and weak lensing, two of the most powerful cosmological probes. It is found that a 200 m x 200 m cylindrical telescope, sensitive out to z=2.5, would be able to distinguish DGP from most dark energy models, and constrain the Hu & Sawicki f(R) model to |f_{R0}| < 9*10^(-6) at 95% confidence. The latter constraint makes extensive use of the lensing spectrum in the nonlinear regime. These results show that 21 cm intensity mapping is not only sensitive to modifications of the standard model's expansion history, but also to structure growth. This makes intensity mapping a powerful and economical technique, achievable on much shorter time scales than optical experiments that would probe the same era.

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  1. Forecast on $f(R)$ Gravity with HI 21cm Intensity Mapping Surveys

    astro-ph.CO 2026-02 conditional novelty 4.0

    Fisher forecasts show BINGO and SKA1-MID 21-cm intensity mapping, combined with Planck priors, could constrain the f(R) gravity parameter B0 down to ~10⁻⁶–10⁻⁸.