Beyond the horizon: Quantifying the full sky foreground wedge in the cylindrical power spectrum
S. Munshi, F. G. Mertens, L. V. E. Koopmans, A. R. Offringa, E., Ceccotti, S. A. Brackenhoff, J. K. Chege, B. K. Gehlot, S. Ghosh, C. H\"ofer,, M. Mevius

TL;DR
This paper derives and validates full-sky equations for the 21-cm foreground wedge in the cylindrical power spectrum, improving accuracy for wide-field instruments and aiding in foreground avoidance strategies.
Contribution
It introduces new full-sky equations for the foreground wedge, extending beyond the flat-sky approximation, and provides a Python library for practical application in 21-cm cosmology.
Findings
Foregrounds can extend beyond conventional wedge boundaries.
New equations accurately describe bright source features in the power spectrum.
Validated equations against numerical simulations for wide-field instruments.
Abstract
One of the main obstacles preventing the detection of the redshifted 21-cm signal from neutral hydrogen in the early Universe is the astrophysical foreground emission, which is several orders of magnitude brighter than the signal. The foregrounds, due to their smooth spectra, are expected to predominantly occupy a region in the cylindrical power spectrum known as the foreground wedge. However, the conventional equations describing the extent of the foreground wedge are derived under a flat-sky approximation. This assumption breaks down for tracking wide-field instruments, thus rendering these equations inapplicable in these situations. In this paper, we derive equations for the full sky foreground wedge and show that the foregrounds can potentially extend far beyond what the conventional equations suggest. We also derive the equations that describe a specific bright source in the…
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