A near-infrared stellar atlas of the Galactic plane from the VVVX survey

  • Javier Alonso-García
  • , Maren Hempel
  • , Roberto K. Saito
  • , Dante Minniti
  • , Nicholas J. G. Cross
  • , Jorge Anais
  • , Jura Borissova
  • , Márcio Catelan
  • , José G. Fernández-Trincado
  • , Elisa R. Garro
  • , Zhen Guo
  • , Philip W. Lucas
  • , María G. Navarro
  • , Casmir O. Obasi
  • , Leigh C. Smith

Research output: Contribution to journalArticlepeer-review

Abstract

The VISTA Variables in the Via Lactea eXtended (VVVX) ESO public survey observed the Galactic plane and the outer Galactic bulge in the near-infrared to mitigate the effects of extinction that severely limit optical observations of these regions. By significantly expanding the area covered by the original VVV survey, VVVX enables a deeper and broader exploration of the most obscured and crowded regions of the Milky Way. We aim to extend and complete our photometric catalogs of the entire Galactic plane region accessible from the southern hemisphere, focusing on the areas newly covered by the VVVX survey. Building on previous work, we applied point-spread function fitting techniques to detect point sources and extract their deep J, H, and Ks photometry across the VVVX footprint. The resulting catalogs were calibrated using astrometric and photometric reference data. Cross-matching between filters and epochs was used to ensure a high level of reliability and completeness. We produce a deep, highly complete near-infrared catalog of more than 700 million sources in the Galactic plane and outer Galactic bulge. When combined with our previous VVV atlas, the full catalog includes over 1.5 billion sources. The derived density maps and color-magnitude diagrams enable detailed studies of Galactic structure, extinction, and stellar populations, and highlight features such as the Carina arm tangency, the Sagittarius stream, and numerous star clusters. This extended atlas provides an unprecedented view of the innermost regions of the Milky Way. It is now publicly available through the VISTA Science Archive, offering a valuable resource for the astronomical community to investigate the structure and evolution of the Galactic disk and bulge.
Original languageEnglish
Number of pages8
JournalAstronomy & Astrophysics
Publication statusAccepted/In press - 5 Dec 2025

Keywords

  • astro-ph.GA
  • astro-ph.SR

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