The Faint Satellite System of NGC 253: Insights into Low-density Environments and No Satellite Plane
Document Type
Article
Publication Title
Astrophysical Journal
Department
Physics
ISSN
15384357
Volume
966
Issue
2
DOI
10.3847/1538-4357/ad36c4
First Page
1
Last Page
17
Publication Date
5-7-2024
Abstract
We have conducted a systematic search around the Milky Way (MW) analog NGC 253 (D = 3.5 Mpc), as a part of the Panoramic Imaging Survey of Centaurus and Sculptor (PISCeS)—a Magellan+Megacam survey to identify dwarfs and other substructures in resolved stellar light around MW-mass galaxies outside of the Local Group. In total, NGC 253 has five satellites identified by PISCeS within 100 kpc with an absolute V-band magnitude of M V < −7. We have additionally obtained deep Hubble Space Telescope imaging of four reported candidates beyond the survey footprint: Do III, Do IV, and dw0036m2828 are confirmed to be satellites of NGC 253, while SculptorSR is found to be a background galaxy. We find no convincing evidence for the presence of a plane of satellites surrounding NGC 253. We construct its satellite luminosity function, which is complete down to M V ≲ −8 out to 100 kpc and MV ≲ −9 out to 300 kpc, and compare it to those calculated for other Local Volume galaxies. Exploring trends in satellite counts and star-forming fractions among satellite systems, we find relationships with host stellar mass, environment, and morphology, pointing to a complex picture of satellite formation, and a successful model has to reproduce all of these trends.
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.
Recommended Citation
Mutlu-Pakdil, Burçin; Sand, David J.; Crnojević, Denija; Bennet, Paul; Jones, Michael G.; Spekkens, Kristine; Karunakaran, Ananthan; Zaritsky, Dennis; Caldwell, Nelson; Fielder, Catherine E.; Guhathakurta, Puragra; Seth, Anil C.; Simon, Joshua D.; Strader, Jay; and Toloba, Elisa, "The Faint Satellite System of NGC 253: Insights into Low-density Environments and No Satellite Plane" (2024). Pacific Faculty Work. 100.
https://scholarlycommons.pacific.edu/all-faculty/100