Misinterpreting Modified Gravity as Dark Energy: a Quantitative Study
ORAL
Abstract
Standard cosmological data analyses typically constrain simple phenomenological dark-energy parameters, for example the present-day value of the equation of state parameter, w0 , and its variation with scale factor, wa. However, results from such analyses cannot easily indicate the presence of modified gravity. Even if general relativity does not hold, experimental data could still be fit sufficiently well by a phenomenological w0waCDM, unmodified-gravity model. Hence, it would be useful to know if there are generic signatures of modified gravity in standard analyses. We present, for the first time to our knowledge, a quantitative mapping showing how modified gravity models look when (mis)interpreted within the standard unmodified-gravity analysis. Scanning through a broad space of modified-gravity models, and assuming a near-future survey consisting of CMB, BAO, and SNIa observations, we report values of the best-fit set of cosmological parameters including (w0, wa) that would be inferred if modified gravity were at work. We find that modified gravity models that can masquerade as standard gravity lead to very specific biases in standard-parameter spaces. We also comment on implications for measurements of the amplitude of mass fluctuations described by the parameter S8.
–
Publication: arXiv:2111.02866 [astro-ph.CO]
Presenters
-
Yuewei Wen
Authors
-
Yuewei Wen