COLIBRE: calibrating subgrid feedback in cosmological simulations that include a cold gas phase
Abstract
We present the calibration of stellar and active galactic nucleus (AGN) feedback in the subgrid model for the new COLIBRE hydrodynamical simulations of galaxy formation. COLIBRE directly simulates the multi-phase interstellar medium and the evolution of dust grains, which is coupled to the chemistry. COLIBRE is calibrated at three resolutions: particle masses of (m7), (m6), and (m5). To calibrate the COLIBRE feedback at m7 resolution, we run Latin hypercubes of simulations that vary up to four subgrid parameters in cosmological volumes of (). We train Gaussian process emulators on these simulations to predict the galaxy stellar mass function (GSMF) and size - stellar mass relation (SSMR) as functions of the model parameters, which we then fit to observations. The trained emulators not only provide the best-fitting parameter values but also enable us to investigate how different aspects of the prescriptions for supernova and AGN feedback affect the predictions. In particular, we demonstrate that while the observed GSMF and SSMR can be matched individually with a relatively simple supernova feedback model, simultaneously reproducing both necessitates a more sophisticated prescription. We show that the calibrated m7 COLIBRE model not only reproduces the calibration target observables, but also matches various other galaxy properties to which the model was not calibrated. Finally, we apply the calibrated m7 model to the m6 and m5 resolutions and, after slight manual adjustments of the subgrid parameters, achieve a similar level of agreement with the observed GSMF and SSMR.
Cite
@article{arxiv.2509.04067,
title = {COLIBRE: calibrating subgrid feedback in cosmological simulations that include a cold gas phase},
author = {Evgenii Chaikin and Joop Schaye and Matthieu Schaller and Sylvia Ploeckinger and Yannick M. Bahé and Alejandro Benítez-Llambay and Camila Correa and Victor J. Forouhar Moreno and Carlos S. Frenk and Filip Huško and Roi Kugel and Robert McGibbon and Alexander J. Richings and James W. Trayford and Josh Borrow and Robert A. Crain and John C. Helly and Cedric G. Lacey and Aaron Ludlow and Folkert S. J. Nobels},
journal= {arXiv preprint arXiv:2509.04067},
year = {2026}
}
Comments
41 pages, 20 figures (including appendices); accepted for publication in MNRAS; images, videos, and interactive visualizations are available on the COLIBRE website at https://colibre-simulations.org