The impact of strong feedback on galaxy group scaling relations

Fuente: arXiv
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Main Authors: Eckert, D., Seppi, R., Braspenning, J., Finoguenov, A., Gastaldello, F., Lovisari, L., O'Sullivan, E., Ettori, S., Oppenheimer, B. D., Bourne, M. A., Kim, D. -W., Sun, M., Khalil, H., Gozaliasl, G., Bahar, Y. E., Ghirardini, V., Cui, W., Kolokythas, K., McGee, S.
Format: Preprint
Published: 2025
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author Eckert, D.
Seppi, R.
Braspenning, J.
Finoguenov, A.
Gastaldello, F.
Lovisari, L.
O'Sullivan, E.
Ettori, S.
Oppenheimer, B. D.
Bourne, M. A.
Kim, D. -W.
Sun, M.
Khalil, H.
Gozaliasl, G.
Bahar, Y. E.
Ghirardini, V.
Cui, W.
Kolokythas, K.
McGee, S.
author_facet Eckert, D.
Seppi, R.
Braspenning, J.
Finoguenov, A.
Gastaldello, F.
Lovisari, L.
O'Sullivan, E.
Ettori, S.
Oppenheimer, B. D.
Bourne, M. A.
Kim, D. -W.
Sun, M.
Khalil, H.
Gozaliasl, G.
Bahar, Y. E.
Ghirardini, V.
Cui, W.
Kolokythas, K.
McGee, S.
contents Feedback from active supermassive black holes alters the distribution of matter in the Universe by injecting energy in the neighbouring hot gaseous medium, which leads to ejection of gas from the halos of galaxy groups and massive galaxies. Recent cosmological simulations such as FLAMINGO calibrate their feedback model on the baryon fractions of galaxy groups to tune the efficiency of gas ejection. However, recent observational constraints from optically selected groups and the kinetic Sunyaev-Zel'dovich effect yield lower baryon fractions than previous studies, which indicates that feedback may be more ejective than previously thought. Here we show that models involving highly ejective feedback are inconsistent with the scaling relations of local galaxy groups in the mass range $10^{13}-10^{14}M_\odot$. We study the X-ray luminosity-temperature relation in a sample of 44 galaxy groups with high-quality XMM-Newton observations. We show that highly ejective models under-predict the luminosity of galaxy groups at fixed mass at high significance ($5.7σ$). This conclusion is robust against selection effects and is obtained from directly measurable and minimally correlated quantities. We point out that turning observable quantities into gas fraction estimates is challenging, especially in the context of stacking large samples of heterogeneous systems. We argue that calibrating feedback models on baryon fractions is prone to systematic uncertainties and that observable scaling relations are better suited for this task.
format Preprint
id arxiv_https___arxiv_org_abs_2512_04203
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The impact of strong feedback on galaxy group scaling relations
Eckert, D.
Seppi, R.
Braspenning, J.
Finoguenov, A.
Gastaldello, F.
Lovisari, L.
O'Sullivan, E.
Ettori, S.
Oppenheimer, B. D.
Bourne, M. A.
Kim, D. -W.
Sun, M.
Khalil, H.
Gozaliasl, G.
Bahar, Y. E.
Ghirardini, V.
Cui, W.
Kolokythas, K.
McGee, S.
Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
High Energy Astrophysical Phenomena
Feedback from active supermassive black holes alters the distribution of matter in the Universe by injecting energy in the neighbouring hot gaseous medium, which leads to ejection of gas from the halos of galaxy groups and massive galaxies. Recent cosmological simulations such as FLAMINGO calibrate their feedback model on the baryon fractions of galaxy groups to tune the efficiency of gas ejection. However, recent observational constraints from optically selected groups and the kinetic Sunyaev-Zel'dovich effect yield lower baryon fractions than previous studies, which indicates that feedback may be more ejective than previously thought. Here we show that models involving highly ejective feedback are inconsistent with the scaling relations of local galaxy groups in the mass range $10^{13}-10^{14}M_\odot$. We study the X-ray luminosity-temperature relation in a sample of 44 galaxy groups with high-quality XMM-Newton observations. We show that highly ejective models under-predict the luminosity of galaxy groups at fixed mass at high significance ($5.7σ$). This conclusion is robust against selection effects and is obtained from directly measurable and minimally correlated quantities. We point out that turning observable quantities into gas fraction estimates is challenging, especially in the context of stacking large samples of heterogeneous systems. We argue that calibrating feedback models on baryon fractions is prone to systematic uncertainties and that observable scaling relations are better suited for this task.
title The impact of strong feedback on galaxy group scaling relations
topic Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2512.04203