The ALMA REBELS Survey: Discovery of a massive, highly star-forming and morphologically complex ULIRG at z =7.31
Abstract
We present Atacama Large Millimeter/Submillimeter Array (ALMA) [CII] and 158 μ m continuum observations of REBELS-25, a massive, morphologically complex ultra-luminous infrared galaxy (ULIRG; L IR=1.5+0.8-0.5×1012 L) at z=7.31, spectroscopically confirmed by the Reionization Era Bright Emission Line Survey (REBELS) ALMA Large Programme. REBELS-25 has a significant stellar mass of M*=8+4-2×109 M. From dust-continuum and ultraviolet observations, we determine a total obscured + unobscured star formation rate of SFR =199+101-63 M yr-1. This is about four times the SFR estimated from an extrapolated main-sequence. We also infer a [CII]-based molecular gas mass of M H2=5.1+5.1-2.6×1010 M, implying a molecular gas depletion time of t depl, H2=0.3+0.3-0.2 Gyr. We observe a [CII] velocity gradient consistent with disc rotation, but given the current resolution we cannot rule out a more complex velocity structure such as a merger. The spectrum exhibits excess [CII] emission at large positive velocities (500 km s-1), which we interpret as either a merging companion or an outflow. In the outflow scenario, we derive a lower limit of the mass outflow rate of 200 M yr-1, which is consistent with expectations for a star formation-driven outflow. Given its large stellar mass, SFR and molecular gas reservoir 700 Myr after the Big Bang, we explore the future evolution of REBELS-25. Considering a simple, conservative model assuming an exponentially declining star formation history, constant star formation efficiency, and no additional gas inflow, we find that REBELS-25 has the potential to evolve into a galaxy consistent with the properties of high-mass quiescent galaxies recently observed at z4.
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