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FAST Drift Scan Survey for HI Intensity Mapping. II. Stacking-based Beam Construction of the 19-feed Array at $1.4$ GHz
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Neutral hydrogen (HI) intensity mapping (IM) presents great promise for future cosmological large-scale structure surveys. However, a major challenge for HIIM cosmological studies is to accurately subtract the foreground contamination. An accurate beam model is crucial for improving the quality of foreground subtraction. In this work, we develop a stacking-based beam reconstruction method utilizing the radio continuum point sources within the drift-scan field. Based on the Five-hundred-meter Aperture Spherical radio Telescope (FAST), we employ two sets of drift-scan survey data and merge the measurements to construct the beam patterns of the 19 FAST L-band feeds. To model the beams, we utilize the Zernike polynomial (ZP), which effectively captures asymmetric features of the main beam and the different side lobes. Due to the symmetric location of the beams, the main features of the beams are closely related to the distance from the center of the feed array, e.g., as the distance increases, side lobes become more pronounced. This modeling pipeline leverages the stable drift-scan data to extract beam patterns while accounting for and excluding the reflector's changing effects. It provides a more accurate measurement beam and a more precise model beam for FAST HIIM cosmology surveys.
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Cited by 3 Pith papers
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Exploring HI Galaxy Redshift Survey Strategies for the FAST Core Array Interferometry
Simulations find the FAST Core Array interferometer can detect HI galaxies to z~1 with enough number density for power spectrum and BAO constraints, while single-dish surveys are shot-noise limited beyond z~0.35.
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FAST drift scan survey for HI intensity mapping: simulation on Bayesian-stacking-based HI mass function estimation
Using IllustrisTNG simulations, the authors forecast that Bayesian stacking of FAST HI intensity mapping data can measure the HI mass function for red and blue galaxies with a pilot survey, and that sample variance, n...
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Cosmology with HI Intensity Mapping
SKAO HI intensity mapping forecasts yield competitive LambdaCDM constraints (e.g. H0 to ~0.3 km/s/Mpc optimistic) via power spectrum, BAO, bispectrum and stacking, complementary to CMB and optical surveys.
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