LZ-STAR Survey: Low-metallicity star formation survey of Sh2-284: II. The initial mass function
Journal article, 2026

Context. To fully understand the star formation process, we are compelled to study it in a variety of environments. Of particular interest are how star formation and the resulting initial mass function (IMF) vary as a function of metallicity. Aims. Using JWST/NIRCam, we observed an embedded young cluster in the vicinity of Sh2-284 (hereafter S284), the HII region associated with the open cluster Dolidze 25, with the aim of studying star formation in a metal-poor (i.e., about 1/3 of solar) environment. In particular, we aim to measure the peak of the IMF.
Methods. Using JWST/NIRCam photometry, we identified the embedded cluster S284-EC1 and resolved its low-mass content. Via a comparison with pre-main-sequence evolutionary tracks, we determined the mass and extinction for the individual cluster members. Extinction-limited samples were created based on the distribution of extinction and the completeness of the data. For the region with a completeness of 60% or higher, we fit a log-normal distribution to the IMF.
Results. Adopting an age of 1 Myr for the cluster members, supported by the high extinction and outflow activity in the region, the peak of the IMF is at mc = 0.17 ± 0.02M⊙. This value lies toward the low-mass end of the range reported for local young clusters in the literature However, the result is sensitive to the age of the cluster. If an older age of 2 Myr is adopted, the peak mass increases to 0.28 M⊙.
Conclusions. We have found evidence of IMF variation as a function of metallicity, i.e., the peak of the IMF shifts to lower masses as one goes from solar to 1/3 solar metallicity. However, we caution that the result is sensitive to the assumed age of the stellar population, i.e., with peak mass rising if an age older than 1 Myr is adopted. This study further motivates the need for expanded samples of low-metallicity regions and their content to enable more comprehensive measures of the IMF in such environments.

brown dwarfs

stars: luminosity function, mass function

stars: low-mass

stars: pre-main sequence

Author

Morten Andersen

European Southern Observatory (ESO)

A. Brizawasi

Indian Institute of Science

Yu Cheng

National Astronomical Observatory of Japan

R. Fedriani

Spanish National Research Council (CSIC)

Joseph Armstrong

Chalmers, Space, Earth and Environment, Astronomy and Plasmaphysics

Massimo Robberto

Space Telescope Science Institute (STScI)

M. Aghakhanloo

University of Virginia

Jonathan Tan

University of Virginia

Chalmers, Physics, Subatomic, High Energy and Plasma Physics

Astronomy and Astrophysics

0004-6361 (ISSN) 1432-0746 (eISSN)

Vol. 711 A264

Subject Categories (SSIF 2025)

Astronomy, Astrophysics, and Cosmology

DOI

10.1051/0004-6361/202555565

More information

Latest update

8/3/2026 2