Little Blue Dots in the Hubble Space Telescope Frontier Fields: Precursors to Globular Clusters?
Elmegreen, Debra Meloy · Elmegreen, Bruce G.
Original · EN
Galaxies with stellar masses <10⁷ Msun and specific star formation rates sSFR>10⁻⁷ yr⁻¹ were examined on images of the Hubble Space Telescope Frontier Field Parallels for Abell 2744 and MACS J0416.1-02403. They appear as unresolved "Little Blue Dots" (LBDs). They are less massive and have higher sSFR than "blueberries" studied by yang et al. (2017) and higher sSFR than "Blue Nuggets" studied by Tacchella et al.(2016). We divided the LBDs into 3 redshift bins and, for each, stacked the B435, V606, and I814 images convolved to the same stellar point spread function (PSF). Their radii were determined from PSF deconvolution to be 80 to 180 pc. The high sSFR suggest that their entire stellar mass has formed in only 1% of the local age of the universe. The sSFRs at similar epochs in local dwarf galaxies are lower by a factor of 100. Assuming that the star formation rate is epsilonff Mgas/tff for efficiency epsilonff, gas mass Mgas, and free fall time, tff, the gas mass and gas-to-star mass ratio are determined. This ratio exceeds 1 for reasonable efficiencies, and is likely to be 5 even with a high epsilonff of 0.1. We consider whether these regions are forming today's globular clusters. With their observed stellar masses, the maximum likely cluster mass is 10⁵ Mₛun, but if star formation continues at the current rate for 10tff 50 Myr before feedback and gas exhaustion stop it, then the maximum cluster mass could become 10⁶ Mₛun.
English translation
This paper has no Arabic translation yet. Be the first: it takes a few seconds, and the result is stored for every future reader.