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Early steps in the hierarchical assembly of a Milky Way-mass galaxy 1 Gyr after the Big Bang

Published 17 Sep 2026 in astro-ph.GA | (2609.19687v1)

Abstract: We report JWST observations of a zspec=5.196z_{\rm spec}=5.196 compact group of three strongly lensed low-mass galaxies (M⋆∼10<sup>6−7</sup>M⊙M_\star \sim 10<sup>{6-7}</sup> M_\odot each) whose small line-of-sight velocity offsets (from −120±100-120\pm100 to +160±110+160\pm110 km s<sup>−1<sup>{-1}) and projected separations (∼2\sim2 kpc) suggest that they are undergoing merging. On the basis of abundance-matching arguments, the trio appear to be destined to evolve into a Milky Way-mass galaxy by the present day. Our spectrophotometric analysis suggests that the stellar mass growth of this system is not simply just due to the merging of its components; rather, it is being dramatically enhanced by intense bursts of star formation. Presumably initiated by tidally-induced gas inflows, these star-forming bursts boost the mass growth 2.6±0.52.6\pm0.5 times that expected in straightforward merging of the existing stellar masses. These spectroscopic observations thus not only demonstrate that hierarchical assembly remains a viable formation channel in the early assembly phases of present-day massive galaxy, but also that interaction-induced bursts of star formation are a major accelerator of this assembly process.

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