A multi-scale molecular and atomic gas view on the HII region N113 in the Large Magellanic Cloud:Evidence for high-mass star formation triggered by supersonically-colliding HI flows

Fuente: arXiv
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Main Authors: Yamada, Rin I., Tokuda, Kazuki, Fukui, Yasuo, Adachi, Daiki, Sewiło, Marta, Indebetouw, Rémy, Chen, C. -H. Rosie, Tsuge, Kisetsu, Nishioka, Takeru, Sano, Hidetoshi, Tamashiro, Mao, Neelamkodan, Naslim, Wong, Tony, Carlson, Lynn R., Oliveira, Joana M., Kawamura, Akiko, Tachihara, Kengo, Onishi, Toshikazu
Format: Preprint
Published: 2026
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author Yamada, Rin I.
Tokuda, Kazuki
Fukui, Yasuo
Adachi, Daiki
Sewiło, Marta
Indebetouw, Rémy
Chen, C. -H. Rosie
Tsuge, Kisetsu
Nishioka, Takeru
Sano, Hidetoshi
Tamashiro, Mao
Neelamkodan, Naslim
Wong, Tony
Carlson, Lynn R.
Oliveira, Joana M.
Kawamura, Akiko
Tachihara, Kengo
Onishi, Toshikazu
author_facet Yamada, Rin I.
Tokuda, Kazuki
Fukui, Yasuo
Adachi, Daiki
Sewiło, Marta
Indebetouw, Rémy
Chen, C. -H. Rosie
Tsuge, Kisetsu
Nishioka, Takeru
Sano, Hidetoshi
Tamashiro, Mao
Neelamkodan, Naslim
Wong, Tony
Carlson, Lynn R.
Oliveira, Joana M.
Kawamura, Akiko
Tachihara, Kengo
Onishi, Toshikazu
contents The Large Magellanic Cloud (LMC) exhibits vigorous high-mass star formation, including the HII regions 30~Dor that is the most active site of star formation in the local group. The present paper focuses on the Giant Molecular Cloud (GMC) in the HII region N113 in the central part of the LMC. Based on the $^{12}$CO($J$ =1-0) and $^{13}$CO($J$ = 1-0) data at a resolution of approximately 0.2 pc taken with ALMA+APEX, we reveal that the GMC consists of two filamentary structures each of approximately 10 pc in length, forming a V-shape pattern with a vertex angle of 90 degrees. The filamentary structures host high-mass young stellar objects in gravitationally bound dense gas. Large-scale HI gas data covering 100 pc reveal two distinct velocity components separated by more than 40 km s$^{-1}$, that correspond to the low velocity (L-) and disk (D-) HI components of the LMC. The L-component appears to be located in a cavity-like distribution of the D-component, and the CO filaments are positioned at the cavity's edge. We find evidence for the L-component to fit the cavity by a 53 pc displacement, and suggest that collisional compression of the HI gas during the last 1.3 Myr triggered the GMC formation and the high-mass star formation. This lends support for the large scale collision driven by the tidal interaction is playing a role in evolution of interstellar medium in N113.
format Preprint
id arxiv_https___arxiv_org_abs_2603_29899
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A multi-scale molecular and atomic gas view on the HII region N113 in the Large Magellanic Cloud:Evidence for high-mass star formation triggered by supersonically-colliding HI flows
Yamada, Rin I.
Tokuda, Kazuki
Fukui, Yasuo
Adachi, Daiki
Sewiło, Marta
Indebetouw, Rémy
Chen, C. -H. Rosie
Tsuge, Kisetsu
Nishioka, Takeru
Sano, Hidetoshi
Tamashiro, Mao
Neelamkodan, Naslim
Wong, Tony
Carlson, Lynn R.
Oliveira, Joana M.
Kawamura, Akiko
Tachihara, Kengo
Onishi, Toshikazu
Astrophysics of Galaxies
The Large Magellanic Cloud (LMC) exhibits vigorous high-mass star formation, including the HII regions 30~Dor that is the most active site of star formation in the local group. The present paper focuses on the Giant Molecular Cloud (GMC) in the HII region N113 in the central part of the LMC. Based on the $^{12}$CO($J$ =1-0) and $^{13}$CO($J$ = 1-0) data at a resolution of approximately 0.2 pc taken with ALMA+APEX, we reveal that the GMC consists of two filamentary structures each of approximately 10 pc in length, forming a V-shape pattern with a vertex angle of 90 degrees. The filamentary structures host high-mass young stellar objects in gravitationally bound dense gas. Large-scale HI gas data covering 100 pc reveal two distinct velocity components separated by more than 40 km s$^{-1}$, that correspond to the low velocity (L-) and disk (D-) HI components of the LMC. The L-component appears to be located in a cavity-like distribution of the D-component, and the CO filaments are positioned at the cavity's edge. We find evidence for the L-component to fit the cavity by a 53 pc displacement, and suggest that collisional compression of the HI gas during the last 1.3 Myr triggered the GMC formation and the high-mass star formation. This lends support for the large scale collision driven by the tidal interaction is playing a role in evolution of interstellar medium in N113.
title A multi-scale molecular and atomic gas view on the HII region N113 in the Large Magellanic Cloud:Evidence for high-mass star formation triggered by supersonically-colliding HI flows
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2603.29899