Impact of instrument and data characteristics in the interferometric reconstruction of the 21 cm power spectrum
arXiv:2210.03721 · doi:10.1093/mnras/stad090
Abstract
Combining the visibilities measured by an interferometer to form a cosmological power spectrum is a complicated process. In a delay-based analysis, the mapping between instrumental and cosmological space is not a one-to-one relation. Instead, neighbouring modes contribute to the power measured at one point, with their respective contributions encoded in the window functions. To better understand the power measured by an interferometer, we assess the impact of instrument characteristics and analysis choices on these window functions. Focusing on the Hydrogen Epoch of Reionization Array (HERA) as a case study, we find that long-baseline observations correspond to enhanced low-k tails of the window functions, which facilitate foreground leakage, whilst an informed choice of bandwidth and frequency taper can reduce said tails. With simple test cases and realistic simulations, we show that, apart from tracing mode mixing, the window functions help accurately reconstruct the power spectrum estimator of simulated visibilities. The window functions depend strongly on the beam chromaticity, and less on its spatial structure - a Gaussian approximation, ignoring side lobes, is sufficient. Finally, we investigate the potential of asymmetric window functions, down-weighting the contribution of low-k power to avoid foreground leakage. The window functions presented here correspond to the latest HERA upper limits for the full Phase I data. They allow an accurate reconstruction of the power spectrum measured by the instrument and will be used in future analyses to confront theoretical models and data directly in cylindrical space.
18 pages, 19 figures, accepted for publication in MNRAS
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Cited by in corpus (8)
- Improved Constraints on the 21 cm EoR Power Spectrum and the X-Ray Heating of the IGM with HERA Phase I Observations
- 21cmEMU: an emulator of 21cmFAST summary observables
- Spectral modelling of Cygnus A between 110 and 250 MHz. Impact on the LOFAR 21-cm signal power spectrum
- First upper limits on the 21-cm signal power spectrum of neutral hydrogen at from the LOFAR 3C196 field
- Reionisation time fields reconstruction from 21 cm signal maps
- Mapping neutral islands during end stages of reionization with photometric intergalactic medium tomography
- Mitigating gain calibration errors from EoR observations with SKA1-Low AA*
- Sample Variance Denoising in Cylindrical 21-cm Power Spectra