SPURS: Massive Stars, Dense Gas, and Lyα Escape in GN-z11 at z = 10.6
Zuyi Chen, Daniel P. Stark, Charlotte A. Mason, Peter Senchyna, Mengtao Tang, Keerthi Vasan G. C., Lily Whitler, Adele Plat, Viola Gelli
Abstract
We present ultra-deep JWST spectroscopy of GN-z11 (z=10.6) obtained through the SPURS Cycle 4 Large Program, providing the deepest rest-UV view yet obtained of a galaxy at z>10. GN-z11 was previously found to be nitrogen-enhanced with detectable Lyα. The SPURS spectrum reveals P-Cygni stellar wind features and broad He II emission that are jointly reproduced by stellar population models incorporating very massive stars (VMS; >100\,M) at low metallicity and young ages (3 Myr). We also detect a broad ( FWHM=1670 km s-1) component to N IV] λ1486, now seen in several nitrogen emitters, potentially arising from dense WN-like winds or LBV-like outbursts associated with a population of VMS in a dense environment, though an AGN-driven wind cannot be excluded. In either scenario, this broad component may trace the gas producing GN-z11's nitrogen enhancement. Rest-UV absorption lines reveal a fast (500~km~s-1), highly ionized outflow and a negligible neutral gas covering fraction. We resolve the weak Lyα emission (EW=5.6 Å, f esc,Lyα=2.7\%), finding a broad red wing (44\% of flux at >500 km s-1) that should experience reduced IGM damping wing suppression and help explain Lyα visibility at z>10. Fine-structure O I* λ1304 emission indicates dense neutral gas near a subset of the ionizing sources, which may also scatter Lyα to the large observed velocities. The weak low-ionization absorption favors a picture in which this dense neutral gas is confined to a compact nuclear region. Together, these results are consistent with a rapid burst of star formation building up the dense nuclear regions and surrounding clusters in GN-z11.
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