On the Origin of High-velocity Clouds in the Galaxy
The origin of our Galaxy’s high-velocity clouds (HVCs) remains a mystery after many decades of effort. In this paper, we use the TNG50 simulation of the IllustrisTNG project to identify cool, dense clouds that match observations of Galactic H i HVCs. We track these clouds back in time to determine t...
| 發表在: | The Astrophysical Journal |
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| Main Authors: | , , , |
| 格式: | Article |
| 語言: | 英语 |
| 出版: |
IOP Publishing
2024-01-01
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| 主題: | |
| 在線閱讀: | https://doi.org/10.3847/1538-4357/ad6dde |
| _version_ | 1850052558184251392 |
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| author | Scott Lucchini Jiwon Jesse Han Lars Hernquist Charlie Conroy |
| author_facet | Scott Lucchini Jiwon Jesse Han Lars Hernquist Charlie Conroy |
| author_sort | Scott Lucchini |
| collection | DOAJ |
| container_title | The Astrophysical Journal |
| description | The origin of our Galaxy’s high-velocity clouds (HVCs) remains a mystery after many decades of effort. In this paper, we use the TNG50 simulation of the IllustrisTNG project to identify cool, dense clouds that match observations of Galactic H i HVCs. We track these clouds back in time to determine their origin. For a TNG50 Milky Way−like galaxy, we find that only 17% of HVCs can be tracked directly to the disk and 21% to material stripped out of satellites. The majority of HVCs (62%) arise from warm and hot circumgalactic gas that cools through thermal instability. They then obtain their anomalous velocities through interactions with the turbulent circumgalactic medium. At TNG50 resolution, we do not see evidence for HVCs forming out of very low metallicity intergalactic material. Instead, low-metallicity HVCs are most likely associated with satellites. These results suggest that Galactic HVCs are highly heterogeneous in their origin and can provide insight into the physical processes that shape the circumgalactic medium, such as disk outflows, satellite accretion, and thermal instabilities. |
| format | Article |
| id | doaj-art-4cdabd94ab4949669c5c2cde95f3c8f7 |
| institution | Directory of Open Access Journals |
| issn | 1538-4357 |
| language | English |
| publishDate | 2024-01-01 |
| publisher | IOP Publishing |
| record_format | Article |
| spelling | doaj-art-4cdabd94ab4949669c5c2cde95f3c8f72025-08-20T00:25:54ZengIOP PublishingThe Astrophysical Journal1538-43572024-01-01974110510.3847/1538-4357/ad6ddeOn the Origin of High-velocity Clouds in the GalaxyScott Lucchini0https://orcid.org/0000-0001-9982-0241Jiwon Jesse Han1https://orcid.org/0000-0002-6800-5778Lars Hernquist2https://orcid.org/0000-0001-6950-1629Charlie Conroy3https://orcid.org/0000-0002-1590-8551Center for Astrophysics | Harvard & Smithsonian , 60 Garden Street, Cambridge, MA 02138, USA ; scott.lucchini@cfa.harvard.eduCenter for Astrophysics | Harvard & Smithsonian , 60 Garden Street, Cambridge, MA 02138, USA ; scott.lucchini@cfa.harvard.eduCenter for Astrophysics | Harvard & Smithsonian , 60 Garden Street, Cambridge, MA 02138, USA ; scott.lucchini@cfa.harvard.eduCenter for Astrophysics | Harvard & Smithsonian , 60 Garden Street, Cambridge, MA 02138, USA ; scott.lucchini@cfa.harvard.eduThe origin of our Galaxy’s high-velocity clouds (HVCs) remains a mystery after many decades of effort. In this paper, we use the TNG50 simulation of the IllustrisTNG project to identify cool, dense clouds that match observations of Galactic H i HVCs. We track these clouds back in time to determine their origin. For a TNG50 Milky Way−like galaxy, we find that only 17% of HVCs can be tracked directly to the disk and 21% to material stripped out of satellites. The majority of HVCs (62%) arise from warm and hot circumgalactic gas that cools through thermal instability. They then obtain their anomalous velocities through interactions with the turbulent circumgalactic medium. At TNG50 resolution, we do not see evidence for HVCs forming out of very low metallicity intergalactic material. Instead, low-metallicity HVCs are most likely associated with satellites. These results suggest that Galactic HVCs are highly heterogeneous in their origin and can provide insight into the physical processes that shape the circumgalactic medium, such as disk outflows, satellite accretion, and thermal instabilities.https://doi.org/10.3847/1538-4357/ad6ddeCircumgalactic mediumHigh-velocity cloudsMilky Way GalaxyAstronomical simulations |
| spellingShingle | Scott Lucchini Jiwon Jesse Han Lars Hernquist Charlie Conroy On the Origin of High-velocity Clouds in the Galaxy Circumgalactic medium High-velocity clouds Milky Way Galaxy Astronomical simulations |
| title | On the Origin of High-velocity Clouds in the Galaxy |
| title_full | On the Origin of High-velocity Clouds in the Galaxy |
| title_fullStr | On the Origin of High-velocity Clouds in the Galaxy |
| title_full_unstemmed | On the Origin of High-velocity Clouds in the Galaxy |
| title_short | On the Origin of High-velocity Clouds in the Galaxy |
| title_sort | on the origin of high velocity clouds in the galaxy |
| topic | Circumgalactic medium High-velocity clouds Milky Way Galaxy Astronomical simulations |
| url | https://doi.org/10.3847/1538-4357/ad6dde |
| work_keys_str_mv | AT scottlucchini ontheoriginofhighvelocitycloudsinthegalaxy AT jiwonjessehan ontheoriginofhighvelocitycloudsinthegalaxy AT larshernquist ontheoriginofhighvelocitycloudsinthegalaxy AT charlieconroy ontheoriginofhighvelocitycloudsinthegalaxy |
