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Effects of baryons on weak lensing peak statistics

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arxiv 1905.11636 v2 pith:HHDKQW7W submitted 2019-05-28 astro-ph.CO

classification astro-ph.CO
keywords baryoniceffectssmoothingpeaksconvergenceweak-lensingaffectedarcmin
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abstract

Upcoming weak-lensing surveys have the potential to become leading cosmological probes provided all systematic effects are under control. Recently, the ejection of gas due to feedback energy from active galactic nuclei (AGN) has been identified as major source of uncertainty, challenging the success of future weak-lensing probes in terms of cosmology. In this paper we investigate the effects of baryons on the number of weak-lensing peaks in the convergence field. Our analysis is based on full-sky convergence maps constructed via light-cones from $N$-body simulations, and we rely on the baryonic correction model of Schneider et al. (2019) to model the baryonic effects on the density field. As a result we find that the baryonic effects strongly depend on the Gaussian smoothing applied to the convergence map. For a DES-like survey setup, a smoothing of $\theta_k\gtrsim8$ arcmin is sufficient to keep the baryon signal below the expected statistical error. Smaller smoothing scales lead to a significant suppression of high peaks (with signal-to-noise above 2), while lower peaks are not affected. The situation is more severe for a Euclid-like setup, where a smoothing of $\theta_k\gtrsim16$ arcmin is required to keep the baryonic suppression signal below the statistical error. Smaller smoothing scales require a full modelling of baryonic effects since both low and high peaks are strongly affected by baryonic feedback.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Game of cones: A nulling strategy for modelling lensing convergence in cones with large deviation theory

    astro-ph.CO 2019-09 conditional novelty 6.0 of 10

    The one-point probability distribution of weak-lensing convergence is derived from large-deviation theory and validated against ray-tracing simulations, with a nulling technique restoring percent-level accuracy in the tails.

  2. Cosmological studies from tomographic weak lensing peak abundances and impacts of photo-z errors

    astro-ph.CO 2019-08 conditional novelty 6.0 of 10

    For an LSST-like survey, four-bin tomographic weak lensing peak counts shrink the Omega_m-sigma_8 error contour by about a factor of five relative to 2D peak counts, and can simultaneously constrain photo-z bias to 10...

  3. Cosmological constraining power of the redshifts, heights, and angular clustering of weak gravitational lensing peaks

    astro-ph.CO 2026-07 conditional novelty 5.0 of 10

    In an idealized Euclid-like simulation forecast, the combined redshift distribution, height distribution, and angular clustering of weak-lensing peaks constrain cosmology better than shear two-point correlation functi...

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