JWST catches the assembly of a z ∼ 5 ultra-low-mass galaxy.

Autor: Asada, Yoshihisa, Sawicki, Marcin, Desprez, Guillaume, Abraham, Roberto, Bradač, Maruša, Brammer, Gabriel, Harshan, Anishya, Iyer, Kartheik, Martis, Nicholas S, Mowla, Lamiya, Muzzin, Adam, Noirot, Gaël, Ravindranath, Swara, Sarrouh, Ghassan T E, Strait, Victoria, Willott, Chris J, Zabl, Johannes
Předmět:
Zdroj: Monthly Notices of the Royal Astronomical Society: Letters; Jul2023, Vol. 523 Issue 1, pL40-L45, 6p
Abstrakt: Using CANUCS imaging we found an apparent major merger of two |$z$| ∼ 5 ultra-low-mass galaxies (M ∼107M each) that are doubly imaged and magnified ∼12–15× by the lensing cluster MACS 0417. Both galaxies are experiencing young (∼100 Myr), synchronised bursts of star formation with log (sSFR/Gyr−1) ∼1.3–1.4, yet SFRs of just ∼0.2M yr−1. They have sub-solar (Z ∼ 0.2Z) gas-phase metallicities and are connected by an even more metal-poor star-forming bridge. The galaxy that forms from the merger will have a mass of at least M ∼2 × 107 M, at least half of it formed during the interaction-induced starburst. More than half of the ionizing photons produced by the system (before and during the merger) will have been produced during the burst. This system provides the first detailed look at a merger involving two high- |$z$| ultra-low-mass galaxies of the type believed to be responsible for reionizing the Universe. It suggests that such galaxies can grow via a combination of mass obtained through major mergers, merger-triggered starbursts, and long-term in-situ star formation. If such high- |$z$| mergers are common, then merger-triggered starbursts could be significant contributors to the ionizing photon budget of the Universe. [ABSTRACT FROM AUTHOR]
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