Cosmological impact of redshift drift measurements
arXiv:2108.10739 · doi:10.1093/mnrasl/slab102
Abstract
The redshift drift is a model-independent probe of fundamental cosmology, but choosing a fiducial model one can also use it to constrain the model parameters. We compare the constraining power of redshift drift measurements by the Extremely Large Telescope (ELT), as studied by Liske {\it et al.} (2008), with that of two recently proposed alternatives: the cosmic accelerometer of Eikenberry {\it et al.} (2020), and the differential redshift drift of Cooke (2020). We find that the cosmic accelerometer with a 6-year baseline leads to weaker constraints than those of the ELT (by ), but with identical time baselines it outperforms the ELT by up to a factor of 6. The differential redshift drift always performs worse that the standard approach if the goal is to constrain the matter density, but it can perform significantly better than it if the goal is to constrain the dark energy equation of state. Our results show that accurately measuring the redshift drift and using these measurements to constrain cosmological parameters are different merit functions: an experiment optimized for one of them will not be optimal for the other. These non-trivial trade-offs must be kept in mind as next generation instruments enter their final design and construction phases.
6 pages, 3 figures, 2 tables; MNRAS Lett. (in press)
References in corpus (6)
- Cosmic dynamics in the era of Extremely Large Telescopes
- Forecasts of redshift drift constraints on cosmological parameters
- Precision and consistency of astrocombs
- The spectroscopic follow-up of the QUBRICS bright quasar survey
- The ACCELERATION programme: I. Cosmology with the redshift drift
- Astro2020 Project White Paper: The Cosmic Accelerometer
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- A Comparative Test of the LCDM and R_h=ct Cosmologies Based on Upcoming Redshift Drift Measurements
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- Estimating constraints on cosmological parameters via the canonical and the differential redshift drift with SKA HI 21-cm observations
- Closing the cosmological loop with the redshift drift