Combining galaxy and 21cm surveys
arXiv:1511.07377 · doi:10.1093/mnras/stw108
Abstract
Acoustic waves traveling through the early Universe imprint a characteristic scale in the clustering of galaxies, QSOs and inter-galactic gas. This scale can be used as a standard ruler to map the expansion history of the Universe, a technique known as Baryon Acoustic Oscillations (BAO). BAO offer a high-precision, low-systematics means of constraining our cosmological model. The statistical power of BAO measurements can be improved if the `smearing' of the acoustic feature by non-linear structure formation is undone in a process known as reconstruction. In this paper we use low-order Lagrangian perturbation theory to study the ability of cm experiments to perform reconstruction and how augmenting these surveys with galaxy redshift surveys at relatively low number densities can improve performance. We find that the critical number density which must be achieved in order to benefit cm surveys is set by the linear theory power spectrum near its peak, and corresponds to densities achievable by upcoming surveys of emission line galaxies such as eBOSS and DESI. As part of this work we analyze reconstruction within the framework of Lagrangian perturbation theory with local Lagrangian bias, redshift-space distortions, -dependent noise and anisotropic filtering schemes.
10 pages, final version to appear in MNRAS, helpful suggestions from referee and others included
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Cited by in corpus (23)
- The clustering of galaxies in the completed SDSS-III Baryon Oscillation Spectroscopic Survey: Observational systematics and baryon acoustic oscillations in the correlation function
- Iterative initial condition reconstruction
- Modeling the reconstructed BAO in Fourier space
- On the spatial distribution of neutral hydrogen in the Universe: bias and shot-noise of the HI Power Spectrum
- Reconstructing large-scale structure with neutral hydrogen surveys
- An iterative reconstruction of cosmological initial density fields
- Theoretical Systematics of Future Baryon Acoustic Oscillation Surveys
- Reconstructing cosmic growth with kSZ observations in the era of Stage IV experiments
- Modelling the post-reionization neutral Hydrogen (\HI) bias
- The Reconstructed Power Spectrum in the Zeldovich Approximation
- Intensity mapping with neutral hydrogen and the Hidden Valley simulations
- Measuring the growth of structure with intensity mapping surveys
- The Impact of Wrong Assumptions in BAO Reconstruction
- Recovering lost 21 cm radial modes via cosmic tidal reconstruction
- An Intensity Mapping Constraint on the CO-Galaxy Cross Power Spectrum at Redshift ~ 3
- Synergies between radio, optical and microwave observations at high redshift
- Matched filtering with interferometric 21cm experiments
- Mitigating the noise of DESI mocks using analytic control variates
- Line confusion in spectroscopic surveys and its possible effects: Shifts in Baryon Acoustic Oscillations position
- Reconstruction with velocities
- Perturbative Gaussianizing transforms for cosmological fields
- Mind the gap: the power of combining photometric surveys with intensity mapping
- Self-calibrating BAO measurements in the presence of Small Displacement Interlopers