English

J-PAS: Forecasting constraints on Neutrino Masses

Cosmology and Nongalactic Astrophysics 2025-12-22 v3

Abstract

The large-scale structure survey J-PAS is taking data since October 2023. In this work, we present a forecast based on the Fisher matrix method to establish its sensitivity to the sum of the neutrino masses. We adapt the Fisher Galaxy Survey Code (FARO) to account for the neutrino mass under various configurations applied to galaxy clustering measurements. This approach allows us to test the sensitivity of J-PAS to the neutrino mass across different tracers, with and without non-linear corrections, and under varying sky coverage. We perform our forecast for two cosmological models: ΛCDM+mν\Lambda CDM + \sum m_\nu and w0waCDM+mνw_0w_a CDM + \sum m_\nu. We combine our J-PAS forecast with Cosmic Microwave Background (CMB) data from the Planck Collaboration and Type Ia supernova (SN) data from Pantheon Plus. Our analysis shows that, for a sky coverage of 8,500 square degrees, J-PAS galaxy clustering data alone will constrain the sum of the neutrino masses to an upper limit at 95% C.L of mν<0.32\sum m_\nu < 0.32 eV for the ΛCDM+mν\Lambda CDM + \sum m_\nu model, and mν<0.36\sum m_\nu < 0.36 eV for the w0waCDM+mνw_0w_a CDM + \sum m_\nu model. When combined with Planck data, the upper limit improves significantly. For J-PAS+Planck at 95% C.L, we find mν<0.061\sum m_\nu < 0.061 eV for the ΛCDM+mν\Lambda CDM + \sum m_\nu model, and for J-PAS+Planck+Pantheon Plus, we obtain mν<0.12\sum m_\nu < 0.12 eV for the w0waCDM+mνw_0w_a CDM + \sum m_\nu model. These results demonstrate that J-PAS clustering measurements can play a crucial role in addressing challenges in the neutrino sector, including potential tensions between cosmological and terrestrial measurements of the neutrino mass, as well as in determining the mass ordering.

Keywords

Cite

@article{arxiv.2507.03740,
  title  = {J-PAS: Forecasting constraints on Neutrino Masses},
  author = {Gabriel Rodrigues and Antonio J. Cuesta and Jailson Alcaniz and Miguel Aparicio Resco and Antonio L. Maroto and Manuel Masip and Jamerson G. Rodrigues and Felipe B. M. dos Santos and Javier de Cruz Pérez and Jorge Enrique García-Farieta and Clarissa Siqueira and Fuxing Qin and Yuting Wang and Gong-Bo Zhao and Carlos Hernández-Monteagudo and Valerio Marra and Raul Abramo and Narciso Benítez and Silvia Bonoli and Saulo Carneiro and Javier Cenarro and David Cristóbal-Hornillos and Renato Dupke and Alessandro Ederoclite and Antonio Hernán-Caballero and Carlos López-Sanjuan and Antonio Marín-Franch and Claudia Mendes de Oliveira and Mariano Moles and Laerte Sodré and Keith Taylor and Jesús Varela and Héctor Vázquez Ramió},
  journal= {arXiv preprint arXiv:2507.03740},
  year   = {2025}
}
R2 v1 2026-07-01T03:47:07.973Z