Inverting Fisher biases for fast systematics exploration

Fuente: arXiv
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Hauptverfasser: Sersante, Biancamaria, Georgiou, Christos, Chisari, Nora Elisa
Format: Preprint
Veröffentlicht: 2026
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author Sersante, Biancamaria
Georgiou, Christos
Chisari, Nora Elisa
author_facet Sersante, Biancamaria
Georgiou, Christos
Chisari, Nora Elisa
contents Upcoming cosmological surveys will achieve increasingly precise constraints in cosmological parameter estimation. To guarantee the robustness of cosmological analyses, it is essential to account for and model systematic effects that can bias cosmological constraints, shifting the best fit parameters away from their fiducial values. It is possible to approximately infer the biases that un-modelled systematic effects might introduce in cosmological parameter estimation by means of the Fisher matrix formalism. In this paper, we introduce a new application of this formalism, where by inverting the process, we investigate whether a specific missing or mis-modelled systematic effect can explain away a given tension between two different probes or experiments. We showcase the proposed methodology by examining two representative systematics: galaxy intrinsic alignments and baryonic feedback. As the method is agnostic to the systematic effect and can be applied to a wider range of scenarios, we discuss more possible future applications. While the proposed approach is accurate in the limit of small offsets in the cosmological parameters, where the likelihood can be considered linear in both the cosmological parameters and the systematics, in practice, the region of validity depends on the systematic effect. In general, even beyond this region, the approach still provides a useful test that helps indicate the magnitude and direction of potential biases from systematic effects in data.
format Preprint
id arxiv_https___arxiv_org_abs_2604_15797
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Inverting Fisher biases for fast systematics exploration
Sersante, Biancamaria
Georgiou, Christos
Chisari, Nora Elisa
Cosmology and Nongalactic Astrophysics
Upcoming cosmological surveys will achieve increasingly precise constraints in cosmological parameter estimation. To guarantee the robustness of cosmological analyses, it is essential to account for and model systematic effects that can bias cosmological constraints, shifting the best fit parameters away from their fiducial values. It is possible to approximately infer the biases that un-modelled systematic effects might introduce in cosmological parameter estimation by means of the Fisher matrix formalism. In this paper, we introduce a new application of this formalism, where by inverting the process, we investigate whether a specific missing or mis-modelled systematic effect can explain away a given tension between two different probes or experiments. We showcase the proposed methodology by examining two representative systematics: galaxy intrinsic alignments and baryonic feedback. As the method is agnostic to the systematic effect and can be applied to a wider range of scenarios, we discuss more possible future applications. While the proposed approach is accurate in the limit of small offsets in the cosmological parameters, where the likelihood can be considered linear in both the cosmological parameters and the systematics, in practice, the region of validity depends on the systematic effect. In general, even beyond this region, the approach still provides a useful test that helps indicate the magnitude and direction of potential biases from systematic effects in data.
title Inverting Fisher biases for fast systematics exploration
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2604.15797