DOE OSTI · 2543136
Joint cosmic density reconstruction from photometric and spectroscopic samples
Abstract
ABSTRACT We reconstruct the dark matter density field from spatially overlapping spectroscopic and photometric redshift catalogues through a field-level forward modelling approach. Instead of directly inferring the underlying density field, we find the best-fitting initial Gaussian fluctuations that will evolve into the observed cosmic volume. To account for the substantial uncertainty of photometric redshifts we employ a differentiable continuous Poisson process. As an initial test, we construct a mock based on the upcoming Prime Focus Spectrograph combined with photometric sample modelled on the Subaru Hyper Suprime-Cam. Depending on the statistic of interest, we find improvements in cosmic structure classification equivalent to 50–100 per cent more spectroscopic targets by combining relatively sparse spectroscopic with dense photometric samples.
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Horowitz, B., Melchior, P. (ORCID:0000000288735065). 2025-03-18. Joint cosmic density reconstruction from photometric and spectroscopic samples. https://doi.org/10.1093/mnras%2Fstaf390
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