How to evaluate the sufficiency and complementarity of summary statistics for cosmic fields: an information-theoretic perspective

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Autori principali: Sui, Ce, Mao, Yi, Zhao, Xiaosheng, Jing, Tao, Wandelt, Benjamin D.
Natura: Preprint
Pubblicazione: 2025
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author Sui, Ce
Mao, Yi
Zhao, Xiaosheng
Jing, Tao
Wandelt, Benjamin D.
author_facet Sui, Ce
Mao, Yi
Zhao, Xiaosheng
Jing, Tao
Wandelt, Benjamin D.
contents The advent of increasingly advanced surveys and cosmic tracers has motivated the development of new inference techniques and novel approaches to extracting information from cosmic fields. A central challenge in this endeavor is to quantify the information content carried by these summary statistics in cosmic fields. In particular, how should we assess which statistics are more informative than others and assess the exact degree of complementarity of the information from each statistic? Here, we introduce mutual information (MI) that provides, from an information-theoretic perspective, a natural framework for assessing the sufficiency and complementarity of summary statistics in cosmological data. We demonstrate how MI can be applied to typical inference tasks to make information-theoretic evaluations, using two representative examples: the cosmic microwave background map, from which the power spectrum extracts almost all information as is expected for a Gaussian random field, and the 21~cm brightness temperature map, from which the scattering transform extracts the most non-Gaussian information but is complementary to power spectrum and bispectrum. Our results suggest that MI offers a robust theoretical foundation for evaluating and improving summaries, thereby enabling a deeper understanding of cosmic fields from an information-theoretic perspective.
format Preprint
id arxiv_https___arxiv_org_abs_2511_08716
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle How to evaluate the sufficiency and complementarity of summary statistics for cosmic fields: an information-theoretic perspective
Sui, Ce
Mao, Yi
Zhao, Xiaosheng
Jing, Tao
Wandelt, Benjamin D.
Cosmology and Nongalactic Astrophysics
Instrumentation and Methods for Astrophysics
The advent of increasingly advanced surveys and cosmic tracers has motivated the development of new inference techniques and novel approaches to extracting information from cosmic fields. A central challenge in this endeavor is to quantify the information content carried by these summary statistics in cosmic fields. In particular, how should we assess which statistics are more informative than others and assess the exact degree of complementarity of the information from each statistic? Here, we introduce mutual information (MI) that provides, from an information-theoretic perspective, a natural framework for assessing the sufficiency and complementarity of summary statistics in cosmological data. We demonstrate how MI can be applied to typical inference tasks to make information-theoretic evaluations, using two representative examples: the cosmic microwave background map, from which the power spectrum extracts almost all information as is expected for a Gaussian random field, and the 21~cm brightness temperature map, from which the scattering transform extracts the most non-Gaussian information but is complementary to power spectrum and bispectrum. Our results suggest that MI offers a robust theoretical foundation for evaluating and improving summaries, thereby enabling a deeper understanding of cosmic fields from an information-theoretic perspective.
title How to evaluate the sufficiency and complementarity of summary statistics for cosmic fields: an information-theoretic perspective
topic Cosmology and Nongalactic Astrophysics
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2511.08716