Engineering PapersSearch

DOE OSTI · 2582430

The S-PLUS Fornax Project (S+FP): A first 12-band glimpse of the Fornax galaxy cluster

Abstract

ABSTRACT The Fornax galaxy cluster is the richest nearby (D ∼ 20 Mpc) galaxy association in the southern sky. As such, it provides a wealth of opportunities to elucidate on the processes where environment holds a key role in transforming galaxies. Although it has been the focus of many studies, Fornax has never been explored with contiguous homogeneous wide-field imaging in 12 photometric narrow and broad bands like those provided by the Southern Photometric Local Universe Survey (S-PLUS). In this paper, we present the S-PLUS Fornax Project (S+FP) that aims to comprehensively analyse the galaxy content of the Fornax cluster using S-PLUS. Our data set consists of 106 S-PLUS wide-field frames (FoV∼1.4 × 1.4 deg2) observed in five Sloan Digital Sky Survey-like ugriz broad bands and seven narrow bands covering specific spectroscopic features like [O ii], Ca ii H+K, Hδ, G band, Mg b triplet, Hα, and the Ca ii triplet. Based on S-PLUS specific automated photometry, aimed at correctly detecting Fornax galaxies and globular clusters in S-PLUS images, our data set provides the community with catalogues containing homogeneous 12-band photometry for ∼3 × 106 resolved and unresolved objects within a region extending over ∼208 deg2 (∼5 Rvir in RA) around Fornax’ central galaxy, NGC 1399. We further explore the eagle and IllustrisTNG cosmological simulations to identify 45 Fornax-like clusters and generate mock images on all 12 S-PLUS bands of these structures down to galaxies with M⋆ ≥ 108 M⊙. The S+FP data set we put forward in this first paper of a series will enable a variety of studies some of which are briefly presented.

Explore related subjects

Keep this discovery

BibTeXRIS

Smith Castelli, A., Cortesi, A., Haack, R., Lopes, A., Thainá-Batista, J. (ORCID:0009000822169575), Cid Fernandes, R. (ORCID:0000000196720296), Lomelí-Núñez, L. (ORCID:0000000321272841), Ribeiro, U., de Bom, C. (ORCID:0000000343832969), Cernic, V., Sodré Jr, L. (ORCID:000000023876268X), Zenocratti, L., De Rossi, M., Calderón, J., Herpich, F., Telles, E., Saha, K., Lopes, P., Lopes-Silva, V., Gonçalves, T., Bambrila, D., Cardoso, N., Buzzo, M., Astudillo Sotomayor, P., Demarco, R., Leigh, N., Sarzi, M., Menéndez-Delmestre, K., Faifer, F., Jiménez-Teja, Y., Grossi, M., Hernández-Jiménez, J., Krabbe, A., Gutiérrez Soto, L., Brandão, D., Espinosa, L., Olave-Rojas, D., Oliveira Schwarz, G., Almeida-Fernandes, F., Schoenell, W., Ribeiro, T., Kanaan, A., Mendes de Oliveira, C.. 2024-04-23. The S-PLUS Fornax Project (S+FP): A first 12-band glimpse of the Fornax galaxy cluster. https://doi.org/10.1093/mnras/stae840

Cite the original work for its findings. Save a collection to share your selection of sources.

Discover connections

Connections use source metadata and explicit phrase matches, not verified experimental comparisons.

KEEP EXPLORING

Related reports

The Dark Energy Survey supernova program: a reanalysis of cosmology results and evidence for evolving dark energy with an updated Type Ia supernova calibration

We present improved cosmological constraints from a re-analysis of the Dark Energy Survey (DES) 5-year sample of Type Ia supernovae (DES-SN5YR). This re-analysis includes an improved photometric cross-calibration, recent white dwarf observations to cross-calibrate between DES and low-redshift surveys, retraining the salt3 light-curve model and fixing a numerical approximation in the host-galaxy colour law. Our fully recalibrated sample, which we call DES-Dovekie, comprises ~1600 likely Type Ia SNe from DES and ~200 low-redshift SNe from other surveys. With DES-Dovekie, we obtain Ω m = 0.330 ± 0.015 in flat Lambda-cold dark matter (⁠ΛCDM) which changes Ω m by –0.022 compared to DES-SN5YR. Combining DES-Dovekie with cosmic microwave background data from Planck, Atacama Cosmology Telescope, and South Pole Telescope and the DESI DR2 measurements in a flat CDM cosmology, we find ω 0 = –0.803 ± 0.054 and ω a = –0.72 ± 0.21⁠. Our results hold a significance of 3.2σ, reduced from 4.2σ for DES-SN5YR, to reject the null hypothesis that the data are compatible with the cosmological constant. This significance is equivalent to a Bayesian model preference odds of approximately 5:1 in favour of the flat ω 0 ω a CDM model. Using generally accepted thresholds for model preference, our updated data exhibits only a weak preference for evolving dark energy.

dark energy