New Interpretation for the Orientation of the LMC's Gaseous Arms B and E using ULLYSES

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Main Authors: Horton, April, Poudel, Suraj, Barger, Kathleen A., Lucchini, Scott, Nidever, David L., Chwalik, Erica, Cashman, Frances H., Fox, Andrew J., Lehner, Nicolas, Krishnarao, Dhanesh, McClure-Griffiths, Naomi, D'Onghia, Elena, Tumlinson, Jason, Vazquez, Jo, Sdun, Lauren, Gebhart, Stone, Anthony, Katherine, Cole, Bryce, van Loon, Jacco Th., Dickey, John M., Lynn, Callum, Nguyen, Hiep, Lee, Min-Young
Format: Preprint
Published: 2025
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author Horton, April
Poudel, Suraj
Barger, Kathleen A.
Lucchini, Scott
Nidever, David L.
Chwalik, Erica
Cashman, Frances H.
Fox, Andrew J.
Lehner, Nicolas
Krishnarao, Dhanesh
McClure-Griffiths, Naomi
D'Onghia, Elena
Tumlinson, Jason
Vazquez, Jo
Sdun, Lauren
Gebhart, Stone
Anthony, Katherine
Cole, Bryce
van Loon, Jacco Th.
Dickey, John M.
Lynn, Callum
Nguyen, Hiep
Lee, Min-Young
author_facet Horton, April
Poudel, Suraj
Barger, Kathleen A.
Lucchini, Scott
Nidever, David L.
Chwalik, Erica
Cashman, Frances H.
Fox, Andrew J.
Lehner, Nicolas
Krishnarao, Dhanesh
McClure-Griffiths, Naomi
D'Onghia, Elena
Tumlinson, Jason
Vazquez, Jo
Sdun, Lauren
Gebhart, Stone
Anthony, Katherine
Cole, Bryce
van Loon, Jacco Th.
Dickey, John M.
Lynn, Callum
Nguyen, Hiep
Lee, Min-Young
contents The Large Magellanic Cloud (LMC) experiences disruption from tidal and ram-pressure forces as it travels through the halo of the Milky Way. In this project, we combine radio emission-line observations from the GASS and GASKAP surveys with UV absorption-line observations from the HST Ultraviolet Legacy Library of Young Stars as Essential Standards (ULLYSES) program to trace the material in front of the LMC. Along our 8 stellar sightlines near 30 Doradus, we observe gaseous structures likely associated with two arm-like features flowing in and around the LMC's disk. We detect the nearside gas in neutral, low, and medium ionization species. The lower-ionization species likely undergo both thermal and non-thermal broadening while the moderately-ionized phase is influenced by more non-thermal processes. The total integrated column density of AlIII decreases with increasing angular offset from 30 Doradus, with sightlines within 0.25 degrees containing more moderately ionized gas. We demonstrate from a Gaussian decomposition technique on the HI emission that both arms likely trace an additional 1.0 degree in Galactic longitude toward the 30 Doradus region than previously predicted. We constrain the orientation of the arms by suggesting that they likely converge around (l,b) =(280.5$^\circ$, -31.2$^\circ$) and at least partially cross in front of the LMC. Our observations are consistent with two competing origins of the arms: 1) outflowing material is swept back by tidal and ram-pressure forces or 2) tidally stripped inflows fuel the ongoing stellar activity inside the LMC. Future studies are needed to distinguish between these scenarios.
format Preprint
id arxiv_https___arxiv_org_abs_2509_03739
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle New Interpretation for the Orientation of the LMC's Gaseous Arms B and E using ULLYSES
Horton, April
Poudel, Suraj
Barger, Kathleen A.
Lucchini, Scott
Nidever, David L.
Chwalik, Erica
Cashman, Frances H.
Fox, Andrew J.
Lehner, Nicolas
Krishnarao, Dhanesh
McClure-Griffiths, Naomi
D'Onghia, Elena
Tumlinson, Jason
Vazquez, Jo
Sdun, Lauren
Gebhart, Stone
Anthony, Katherine
Cole, Bryce
van Loon, Jacco Th.
Dickey, John M.
Lynn, Callum
Nguyen, Hiep
Lee, Min-Young
Astrophysics of Galaxies
The Large Magellanic Cloud (LMC) experiences disruption from tidal and ram-pressure forces as it travels through the halo of the Milky Way. In this project, we combine radio emission-line observations from the GASS and GASKAP surveys with UV absorption-line observations from the HST Ultraviolet Legacy Library of Young Stars as Essential Standards (ULLYSES) program to trace the material in front of the LMC. Along our 8 stellar sightlines near 30 Doradus, we observe gaseous structures likely associated with two arm-like features flowing in and around the LMC's disk. We detect the nearside gas in neutral, low, and medium ionization species. The lower-ionization species likely undergo both thermal and non-thermal broadening while the moderately-ionized phase is influenced by more non-thermal processes. The total integrated column density of AlIII decreases with increasing angular offset from 30 Doradus, with sightlines within 0.25 degrees containing more moderately ionized gas. We demonstrate from a Gaussian decomposition technique on the HI emission that both arms likely trace an additional 1.0 degree in Galactic longitude toward the 30 Doradus region than previously predicted. We constrain the orientation of the arms by suggesting that they likely converge around (l,b) =(280.5$^\circ$, -31.2$^\circ$) and at least partially cross in front of the LMC. Our observations are consistent with two competing origins of the arms: 1) outflowing material is swept back by tidal and ram-pressure forces or 2) tidally stripped inflows fuel the ongoing stellar activity inside the LMC. Future studies are needed to distinguish between these scenarios.
title New Interpretation for the Orientation of the LMC's Gaseous Arms B and E using ULLYSES
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2509.03739