DOE OSTI · 2404897
Constraining cosmology with the CMB × line intensity mapping-nulling convergence
Abstract
Lensing reconstruction maps from the cosmic microwave background (CMB) provide direct observations of the matter distribution of the universe without the use of a biased tracer. Such maps, however, constitute projected observables along the line of sight that are dominated by their low-redshift contributions. To cleanly access high-redshift information, Maniyar et al., [Phys. Rev. D 105, 083509 (2022)] showed that a linear combination of lensing maps from both CMB and line intensity mapping (LIM) observations can exactly null the low-redshift contribution to CMB lensing convergence. In this paper we explore the scientific returns of this nulling technique. Here, we show that LIM-nulling estimators can place constraints on standard ΛCDM plus neutrino mass parameters that are competitive with traditional CMB lensing. Additionally, we demonstrate that as a clean probe of the high-redshift universe, LIM nulling can be used for model-independent tests of cosmology beyond ΛCDM and as a probe of the high-redshift matter power spectrum.
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Fronenberg, Hannah, Maniyar, Abhishek S., Pullen, Anthony R., Liu, Adrian. 2024-06-11. Constraining cosmology with the CMB × line intensity mapping-nulling convergence. https://doi.org/10.1103/physrevd.109.123518
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