TL;DR
This paper introduces the syren-new emulator, providing highly accurate, fast, and interpretable symbolic approximations for the linear and nonlinear matter power spectra in extended cosmological models with massive neutrinos and dynamic dark energy.
Contribution
It extends previous emulators to include effects of massive neutrinos and evolving dark energy, achieving high accuracy and computational efficiency.
Findings
Achieves 0.1% accuracy for linear power spectrum
Achieves 0.3% accuracy for nonlinear power spectrum
Provides publicly available code for the emulators
Abstract
Current and future large scale structure surveys aim to constrain the neutrino mass and the equation of state of dark energy. We aim to construct accurate and interpretable symbolic approximations to the linear and nonlinear matter power spectra as a function of cosmological parameters in extended CDM models which contain massive neutrinos and non-constant equations of state for dark energy. This constitutes an extension of the syren-halofit emulators to incorporate these two effects, which we call syren-new (SYmbolic-Regression-ENhanced power spectrum emulator with NEutrinos and ). We also obtain a simple approximation to the derived parameter as a function of the cosmological parameters for these models. Our results for the linear power spectrum are designed to emulate CLASS, whereas for the nonlinear case we aim to match the results of EuclidEmulator2. We…
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Taxonomy
MethodsSPEED: Separable Pyramidal Pooling EncodEr-Decoder for Real-Time Monocular Depth Estimation on Low-Resource Settings
