Diverse ionized gas conditions in a dynamically hot, interacting galaxy at z = 9.31 revealed by JWST/NIRSpec IFU
Ryota Ikeda, Takahiro Morishita, Massimo Stiavelli, Antonello Calabrò
Abstract
We present a spatially and spectrally resolved study of an interacting galaxy, Gz9p3 at z=9.31, using the James Webb Space Telescope NIRSpec/G395H IFU observation with high-spectral resolution (R≈ 2700) mode. Gz9p3 consists of two sub-regions (`core' and `tail'), which show stark contrast in their physical properties. The HII regions in the core are characterized by high electron density (ne2900 cm-3), low gas-phase metallicity (0.25 dex below the mass-metallicity relation), and yet relatively low specific star formation rate (sSFR) among the system. On the other hand, the tail exhibits low electron density (ne<70 cm-3), relatively high gas-phase metallicity that is consistent with the mass-metallicity relation, and high sSFR. The integrated spectrum thus shows the properties inbetween these two regions. No evidence of ordered rotation in ionized gas is found, suggesting that Gz9p3 is a dynamically hot system. Finally, we find ionized gas outflows characterized by the secondary [OIII]5007 line component throughout most of the system. The outflow velocity is below the escape velocity, making Gz9p3 one of the first galactic systems experiencing a galactic fountain. Overall, our findings indicate that this system is in a phase in which the pristine gas is falling efficiently into the core, diluting the gas metallicity, and enhancing star formation and outflows after the galaxy interaction.
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