English

Studying the multi-phase interstellar medium in the Large Magellanic Cloud with SRG/eROSITA -- I. Analysis of diffuse X-ray emission

High Energy Astrophysical Phenomena 2025-08-20 v1 Astrophysics of Galaxies

Abstract

The Large Magellanic Cloud (LMC), being a nearby and actively star-forming satellite galaxy of the Milky Way, is an ideal site to observe the multi-phase interstellar medium (ISM) of a galaxy across the electromagnetic spectrum. We aim to exploit the available SRG/eROSITA all-sky survey data to study the distribution, composition and properties of the diffuse X-ray emitting hot gas in the LMC. We construct multi-band X-ray images of the LMC, reflecting the morphology and temperatures of the diffuse hot gas. By performing spatially resolved X-ray spectroscopy of 175 regions, we constrain the distribution, physical state, and composition of the hot ISM phase throughout the LMC. We combine our constraints with multiwavelength data to obtain a comprehensive view of the different ISM phases. We measure a total X-ray luminosity of the hot ISM phase of 1.9×1038ergs11.9\times10^{38}\,\mathrm{erg\,s^{-1}} (0.25.0keV0.2-5.0\,\mathrm{keV} band), and constrain its thermal energy to around 5×1054erg5\times10^{54}\,\mathrm{erg}. The typical density and temperature of the X-ray emitting plasma are around 5×103cm35\times10^{-3}\,\mathrm{cm^{-3}} and 0.25keV0.25\,\mathrm{keV}, respectively, with both exhibiting broad peaks in the southeast of the LMC. The observed degree of X-ray absorption correlates strongly with the distribution of foreground HI gas, whereas a spatial anticorrelation between the hot and cold ISM phases is visible on sub-kpc scales within the disk. The abundances of light metals show a strong gradient throughout the LMC, with the north and east exhibiting a strong α\alpha-enhancement, as expected from observed massive stellar populations there. In contrast, the enigmatic ``X-ray spur'' exhibits a local deficit in α\alpha-elements, and a peak in hot-gas pressure at P/k105Kcm3P/k\sim10^5\,\mathrm{K\,cm^{-3}}, consistent with a dominant energy input through tidally driven gas collisions.

Keywords

Cite

@article{arxiv.2506.23698,
  title  = {Studying the multi-phase interstellar medium in the Large Magellanic Cloud with SRG/eROSITA -- I. Analysis of diffuse X-ray emission},
  author = {Martin G. F. Mayer and Manami Sasaki and Frank Haberl and Kisetsu Tsuge and Yasuo Fukui and Chandreyee Maitra and Miroslav D. Filipovic and Zachary J. Smeaton and Lister Staveley-Smith and Baerbel Koribalski and Sean Points and Patrick Kavanagh},
  journal= {arXiv preprint arXiv:2506.23698},
  year   = {2025}
}

Comments

Accepted for publication by A&A; 22 pages, 14 figures, 1 table; Abstract abridged