Estimates for the impact of Ultraviolet Background fluctuations on galaxy clustering measurements
Phoebe Upton Sanderbeck, Vid Irsic, Matthew McQuinn, Avery Meiksin

TL;DR
Ultraviolet background fluctuations can subtly influence galaxy clustering measurements across various large-scale structure surveys, potentially biasing cosmological parameter estimates if not properly accounted for.
Contribution
This paper estimates the magnitude of UV background fluctuation effects on galaxy clustering and intensity mapping surveys, highlighting their potential to bias cosmological measurements.
Findings
Background fluctuations affect 21 cm intensity maps at z=1-3 with fractional effects up to 0.3.
Effects on H alpha and Ly alpha intensity mapping are smaller, around 0.1.
Ionizing backgrounds can bias the fNL parameter by more than unity in next-generation surveys.
Abstract
Spatial fluctuations in ultraviolet backgrounds can subtly modulate the distribution of extragalactic sources, a potential signal and systematic for large-scale structure surveys. While this modulation has been shown to be significant for 3D Ly alpha forest surveys, its relevance for other large-scale structure probes has been hardly explored, despite being the only astrophysical process that likely can affect clustering measurements on the scales of >~Mpc. We estimate that the background fluctuations, modulating the amount of H I, have a fractional effect of (0.03-0.3) x (k/[10^-2 Mpc^-1])^-1 on the power spectrum of 21 cm intensity maps at z = 1-3. We find a smaller effect for H alpha and Ly alpha intensity mapping surveys of (0.001-0.1) x (k/[10^-2 Mpc^-1])-1 and even smaller effect for more traditional surveys that correlate the positions of individual H alpha or Ly alpha emitters.…
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