How Many Bursts Does it Take to Form a Core at the Center of a Galaxy?

Fuente: arXiv
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Main Authors: Mostow, Olivia, Torrey, Paul, Rose, Jonah C., Garcia, Alex M., Ahvazi, Niusha, Lisanti, Mariangela, Kallivayalil, Nitya
Format: Preprint
Published: 2024
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author Mostow, Olivia
Torrey, Paul
Rose, Jonah C.
Garcia, Alex M.
Ahvazi, Niusha
Lisanti, Mariangela
Kallivayalil, Nitya
author_facet Mostow, Olivia
Torrey, Paul
Rose, Jonah C.
Garcia, Alex M.
Ahvazi, Niusha
Lisanti, Mariangela
Kallivayalil, Nitya
contents We present a novel method for systematically assessing the impact of central potential fluctuations associated with bursty outflows on the structure of dark matter halos for classical and ultra-faint dwarf galaxies. Specifically, we use dark-matter-only simulations augmented with a manually-added massive particle that modifies the central potential and approximately accounts for a centrally-concentrated baryonic component. This approach enables precise control over the magnitude, frequency, and timing of rapid outflow events. We demonstrate that this method can reproduce the established result of core formation for systems that undergo multiple episodes of bursty outflows. In contrast, we also find that equivalent models that involve only a single (or small number of) burst episodes do not form cores with the same efficacy. This is important because many UFDs in the Local Universe are observed to have tightly constrained star formation histories that are best described by a single, early burst of star formation. Using a suite of cosmological, zoom-in simulations, we identify the regimes in which single bursts can and cannot form a cored density profile. Our results suggest that it may be difficult to form cores in UFD-mass systems with a single, early burst regardless of its magnitude.
format Preprint
id arxiv_https___arxiv_org_abs_2412_09566
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle How Many Bursts Does it Take to Form a Core at the Center of a Galaxy?
Mostow, Olivia
Torrey, Paul
Rose, Jonah C.
Garcia, Alex M.
Ahvazi, Niusha
Lisanti, Mariangela
Kallivayalil, Nitya
Astrophysics of Galaxies
We present a novel method for systematically assessing the impact of central potential fluctuations associated with bursty outflows on the structure of dark matter halos for classical and ultra-faint dwarf galaxies. Specifically, we use dark-matter-only simulations augmented with a manually-added massive particle that modifies the central potential and approximately accounts for a centrally-concentrated baryonic component. This approach enables precise control over the magnitude, frequency, and timing of rapid outflow events. We demonstrate that this method can reproduce the established result of core formation for systems that undergo multiple episodes of bursty outflows. In contrast, we also find that equivalent models that involve only a single (or small number of) burst episodes do not form cores with the same efficacy. This is important because many UFDs in the Local Universe are observed to have tightly constrained star formation histories that are best described by a single, early burst of star formation. Using a suite of cosmological, zoom-in simulations, we identify the regimes in which single bursts can and cannot form a cored density profile. Our results suggest that it may be difficult to form cores in UFD-mass systems with a single, early burst regardless of its magnitude.
title How Many Bursts Does it Take to Form a Core at the Center of a Galaxy?
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2412.09566