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A new approach to observational cosmology using the scattering transform

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arxiv 2006.08561 v2 pith:P2WP764K submitted 2020-06-15 astro-ph.CO astro-ph.IM

classification astro-ph.COastro-ph.IM
keywords scatteringcosmologyfieldstransformcoefficientscosmologicalestimatornon-gaussian
verification ladder T0 review T1 audit T2 compute T3 formal
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Parameter estimation with non-Gaussian stochastic fields is a common challenge in astrophysics and cosmology. In this paper, we advocate performing this task using the scattering transform, a statistical tool sharing ideas with convolutional neural networks (CNNs) but requiring no training nor tuning. It generates a compact set of coefficients, which can be used as robust summary statistics for non-Gaussian information. It is especially suited for fields presenting localized structures and hierarchical clustering, such as the cosmological density field. To demonstrate its power, we apply this estimator to a cosmological parameter inference problem in the context of weak lensing. On simulated convergence maps with realistic noise, the scattering transform outperforms classic estimators and is on a par with state-of-the-art CNN. It retains the advantages of traditional statistical descriptors, has provable stability properties, allows to check for systematics, and importantly, the scattering coefficients are interpretable. It is a powerful and attractive estimator for observational cosmology and the study of physical fields in general.

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Cited by 3 Pith papers

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