The MillenniumTNG Project: Impact of massive neutrinos on the cosmic large-scale structure and the distribution of galaxies
C\'esar Hern\'andez-Aguayo, Volker Springel, Sownak Bose, Carlos, Frenk, Adrian Jenkins, Monica Barrera, Fulvio Ferlito, R\"udiger Pakmor,, Simon D. M. White, Lars Hernquist, Ana Maria Delgado, Rahul Kannan, Boryana, Hadzhiyska

TL;DR
This paper presents large-scale cosmological simulations incorporating massive neutrinos to assess their impact on structure formation and galaxy distribution, aiding future neutrino mass measurements.
Contribution
It introduces advanced simulation techniques for neutrino-inclusive cosmology, including particle-based methods and code modifications, to improve accuracy in modeling large-scale structure.
Findings
Neutrinos significantly affect the matter power spectrum and halo mass function.
Galaxy formation and clustering are sensitive to neutrino mass variations.
Simulations enable better predictions for neutrino mass constraints from galaxy surveys.
Abstract
We discuss the cold dark matter plus massive neutrinos simulations of the MillenniumTNG (MTNG) project, which aim to improve understanding of how well ongoing and future large-scale galaxy surveys will measure neutrino masses. Our largest simulations, on a side, use particles of mass to represent cold dark matter, and to represent a population of neutrinos with summed mass . Smaller volume runs with also include cases with . All simulations are carried out twice using the paired-and-fixed technique for cosmic variance reduction. We evolve the neutrino component using the particle-based importance sampling method, which greatly reduces shot noise in the neutrino density field. In addition, we modify the…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Dark Matter and Cosmic Phenomena · Neutrino Physics Research
