Properties of the Magellanic Corona

Fuente: arXiv
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Main Authors: Lucchini, Scott, D'Onghia, Elena, Fox, Andrew J.
Format: Preprint
Published: 2023
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author Lucchini, Scott
D'Onghia, Elena
Fox, Andrew J.
author_facet Lucchini, Scott
D'Onghia, Elena
Fox, Andrew J.
contents We characterize the Magellanic Corona, the warm gaseous halo around the Large Magellanic Cloud (LMC). The Corona is a key ingredient in the formation of the Magellanic Stream (Lucchini et al. 2020, 2021) and has recently been observed in high-ion absorption around the LMC. In this work we present a suite of high-resolution hydrodynamical simulations to constrain its total mass and temperature prior to the infall of the Magellanic Clouds to our Galaxy. We find that the LMC is able to host a stable Corona before and during its approach to the MW through to the present day. With a Magellanic Corona of $>2\times10^9$ M$_\odot$ at $3\times10^5$ K, our simulations can reproduce the observed total mass of the neutral and ionized components of the Trailing Stream, size of the LMC disk, ionization fractions along the Stream, morphology of the neutral gas, and on-sky extent of the ionized gas. The Corona plays an integral role in the survival, morphology, and composition of the Magellanic Clouds and the Trailing Stream.
format Preprint
id arxiv_https___arxiv_org_abs_2311_16221
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Properties of the Magellanic Corona
Lucchini, Scott
D'Onghia, Elena
Fox, Andrew J.
Astrophysics of Galaxies
We characterize the Magellanic Corona, the warm gaseous halo around the Large Magellanic Cloud (LMC). The Corona is a key ingredient in the formation of the Magellanic Stream (Lucchini et al. 2020, 2021) and has recently been observed in high-ion absorption around the LMC. In this work we present a suite of high-resolution hydrodynamical simulations to constrain its total mass and temperature prior to the infall of the Magellanic Clouds to our Galaxy. We find that the LMC is able to host a stable Corona before and during its approach to the MW through to the present day. With a Magellanic Corona of $>2\times10^9$ M$_\odot$ at $3\times10^5$ K, our simulations can reproduce the observed total mass of the neutral and ionized components of the Trailing Stream, size of the LMC disk, ionization fractions along the Stream, morphology of the neutral gas, and on-sky extent of the ionized gas. The Corona plays an integral role in the survival, morphology, and composition of the Magellanic Clouds and the Trailing Stream.
title Properties of the Magellanic Corona
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2311.16221