The degeneracy between primordial non-Gaussianity and foregrounds in 21cm intensity mapping experiments
arXiv:2007.12126 · doi:10.1093/mnras/staa2986
Abstract
Potential evidence for primordial non-Gaussianity (PNG) is expected to lie in the largest scales mapped by cosmological surveys. Forthcoming 21cm intensity mapping experiments will aim to probe these scales by surveying neutral hydrogen (HI) within galaxies. However, foreground signals dominate the faint 21cm emission, meaning foreground cleaning is required to recover the cosmological signal. The effect this has is to damp the HI power spectrum on the largest scales, especially along the line-of-sight. Whilst there is agreement that this contamination is potentially problematic for probing PNG, it is yet to be fully explored and quantified. In this work we carry out the first forecasts on that incorporate simulated foreground maps that are removed using techniques employed in real data. Using an MCMC analysis, we demonstrate that foreground cleaned data recovers hugely biased values ( [68% CL]) on our fiducial input. Introducing a model with fixed parameters for the foreground contamination allows us to recover unbiased results (). However, it is not clear that we will have sufficient understanding of foreground contamination to allow for such rigid models. Treating the main parameter in our foreground model as a nuisance parameter and marginalizing over it, still recovers unbiased results but at the expense of much larger errors (), that can only be reduced by imposing the Planck 2018 prior. Our results show that significant progress on understanding and controlling foreground removal effects is necessary in order to study PNG with HI intensity mapping.
15 pages, 8 figures. The busy reader should study Fig 8 which demonstrates the degeneracy between f_NL and k_FG the main parameter in our model to account for foreground removal effects. Accepted by MNRAS
References in corpus (18)
- The NumPy array: a structure for efficient numerical computation
- The imprints of primordial non-gaussianities on large-scale structure: scale dependent bias and abundance of virialized objects
- Baryon Acoustic Oscillation Intensity Mapping as a Test of Dark Energy
- Measurement of 21 cm brightness fluctuations at z ~ 0.8 in cross-correlation
- Late-time cosmology with 21cm intensity mapping experiments
- Testing General Relativity with 21 cm intensity mapping
- Blind foreground subtraction for intensity mapping experiments
- Constraints on primordial non-Gaussianity from 800,000 photometric quasars
- Forecasts on the Dark Energy and Primordial Non-Gaussianity Observations with the Tianlai Cylinder Array
- Einstein's legacy in galaxy surveys
- Fast simulations for intensity mapping experiments
- Baryonic acoustic oscillations from 21cm intensity mapping: the Square Kilometre Array case
- Recovery of 21 cm intensity maps with sparse component separation
- Generating Log-normal Mock Catalog of Galaxies in Redshift Space
- Impact of Foregrounds on HI Intensity Mapping Cross-Correlations with Optical Surveys
- Multipole expansion for HI intensity mapping experiments: simulations and modelling
- Non-Gaussian Shape Discrimination with Spectroscopic Galaxy Surveys
- HIR4: Cosmological signatures imprinted on the cross correlation between 21-cm map and galaxy clustering
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- The foreground transfer function for HI intensity mapping signal reconstruction: MeerKLASS and precision cosmology applications
- Detecting the power spectrum turnover with HI intensity mapping
- Power spectrum multipole expansion for HI intensity mapping experiments: unbiased parameter estimation
- The HI intensity mapping bispectrum including observational effects
- Constraining primordial non-Gaussianity by combining next-generation galaxy and 21 cm intensity mapping surveys
- Multi-wavelength spectroscopic probes: biases from neglecting light-cone effects
- The local PNG bias of neutral Hydrogen,
- Measuring ultra-large scale effects in the presence of 21cm intensity mapping foregrounds
- HI intensity mapping with MeerKAT: forecast for delay power spectrum measurement using interferometer mode
- HI intensity mapping correlation function from UNIT simulations: BAO and observationally induced anisotropy
- Subtracting the kinetic Sunyaev-Zeldovich effect from the cosmic microwave background with surveys of large-scale structure
- Radio-optical synergies at high redshift to constrain primordial non-Gaussianity
- Cosmology at high redshift -- a probe of fundamental physics
- Unveiling the Universe with Emerging Cosmological Probes
- Baryon acoustic oscillations from HI intensity mapping: the importance of cross-correlations in the monopole and quadrupole
- Constraining primordial non-Gaussianity by combining photometric galaxy and 21cm intensity mapping surveys
- A wide-angle formulation of foreground filters for HI intensity mapping
- Separating Angular and Radial Modes with Spherical-Fourier Bessel Power Spectrum on All Scales and Implications for Systematics Mitigation
- Multi-tracing the primordial Universe with future surveys
- Clustering redshifts with the 21cm-galaxy cross-bispectrum
- Constraining the growth rate on linear scales by combining SKAO and DESI surveys