The BINGO Project V: Further steps in Component Separation and Bispectrum Analysis
arXiv:2107.01637 · doi:10.1051/0004-6361/202141707
Abstract
Observing the neutral hydrogen distribution across the Universe via redshifted 21cm line intensity mapping constitutes a powerful probe for cosmology. However, the redshifted 21cm signal is obscured by the foreground emission from our Galaxy and other extragalactic foregrounds. This paper addresses the capabilities of the BINGO survey to separate such signals. Specifically, this paper looks in detail at the different residuals left over by foreground components, shows that a noise-corrected spectrum is unbiased, and shows that we understand the remaining systematic residuals by analyzing nonzero contributions to the three-point function. We use the generalized needlet internal linear combination, which we apply to sky simulations of the BINGO experiment for each redshift bin of the survey. We present our recovery of the redshifted 21cm signal from sky simulations of the BINGO experiment, including foreground components. We test the recovery of the 21cm signal through the angular power spectrum at different redshifts, as well as the recovery of its non-Gaussian distribution through a bispectrum analysis. We find that non-Gaussianities from the original foreground maps can be removed down to, at least, the noise limit of the BINGO survey with such techniques. Our component separation methodology allows us to subtract the foreground contamination in the BINGO channels down to levels below the cosmological signal and the noise, and to reconstruct the 21cm power spectrum for different redshift bins without significant loss at multipoles . Our bispectrum analysis yields strong tests of the level of the residual foreground contamination in the recovered 21cm signal, thereby allowing us to both optimize and validate our component separation analysis. (Abridged)
20 pages. Version accepted in A&A
References in corpus (16)
- Primordial Non-Gaussianities from Inflation Models
- A full sky, low foreground, high resolution CMB map from WMAP
- Separation of anomalous and synchrotron emissions using WMAP polarization data
- Blind foreground subtraction for intensity mapping experiments
- Primordial non-Gaussianity, scale-dependent bias, and the bispectrum of galaxies
- The Scale of the Problem : Recovering Images of Reionization with GMCA
- Non-parametric foreground subtraction for 21cm epoch of reionization experiments
- Recovery of 21 cm intensity maps with sparse component separation
- The BINGO Project I: Baryon Acoustic Oscillations from Integrated Neutral Gas Observations
- Cosmological parameter forecasts for HI intensity mapping experiments using the angular power spectrum
- The BINGO Project II: Instrument Description
- The BINGO Project VII: Cosmological Forecasts from 21cm Intensity Mapping
- The HI intensity mapping bispectrum including observational effects
- The BINGO Project VI: HI Halo Occupation Distribution and Mock Building
- A Joint Analysis for Cosmology and Photometric Redshift Calculation Using Cross Correlations
- The BINGO Project IV: Simulations for mission performance assessment and preliminary component separation steps
Cited by in corpus (16)
- The BINGO Project I: Baryon Acoustic Oscillations from Integrated Neutral Gas Observations
- The BINGO Project II: Instrument Description
- The BINGO Project VII: Cosmological Forecasts from 21cm Intensity Mapping
- Cosmological constraints from the power spectrum and bispectrum of 21cm intensity maps
- Full-sky Models of Galactic Microwave Emission and Polarization at Sub-arcminute Scales for the Python Sky Model
- The BINGO Project VI: HI Halo Occupation Distribution and Mock Building
- The BINGO Project IV: Simulations for mission performance assessment and preliminary component separation steps
- Eliminating polarization leakage effect for neutral hydrogen intensity mapping with deep learning
- The BINGO Project IX: Search for Fast Radio Bursts -- A Forecast for the BINGO Interferometry System
- Cosmological constraints from low redshift 21 cm intensity mapping with machine learning
- The BINGO project VIII: On the recoverability of the BAO signal on HI intensity mapping simulations
- Testing synchrotron models and frequency resolution in BINGO 21 cm simulated maps using GNILC
- Thermal Sunyaev-Zeldovich measurements and cosmic infrared background leakage mitigation combining upcoming ground-based telescopes
- Cosmological Forecasts from the Baryon Acoustic Oscillations in 21cm Intensity Mapping
- Needlets and foreground removal for SKAO hydrogen intensity maps
- The BINGO project X. Cosmological parameter constraints from HI Intensity Mapping lognormal simulations