A spectroscopically confirmed z=1.327 galaxy-scale deflector magnifying a z~8 Lyman-Break galaxy in the Brightest of Reionizing Galaxies survey
R. L. Barone-Nugent, A. Sonnenfeld, J. S. B. Wyithe, M. Trenti, T., Treu, K. Schmidt, P. Oesch, L. Bradley, T. Puzia

TL;DR
This paper reports the discovery and detailed analysis of a galaxy-scale gravitational lens at redshift 1.327 magnifying a background galaxy at z~8, using spectroscopy and lens modeling to confirm the lensing nature and properties.
Contribution
It presents the first detailed spectroscopic confirmation and modeling of a high-redshift (z>1) galaxy-scale lens magnifying a z~8 galaxy, including mass estimates and lens configuration.
Findings
Confirmed lens at z=1.327 with a magnification factor of 4.3
Detected a demagnified secondary image consistent with lens model
Estimated group mass of approximately 9.62×10^{11} solar masses
Abstract
We present a detailed analysis of an individual case of gravitational lensing of a Lyman-Break galaxy (LBG) in a blank field, identified in Hubble Space Telescope imaging obtained as part of the Brightest of Reionizing Galaxies survey. To investigate the close proximity of the bright () -dropout to a small group of foreground galaxies, we obtained deep spectroscopy of the dropout and two foreground galaxies using VLT/X-Shooter. We detect H-, H-, [OIII] and [OII] emission in the brightest two foreground galaxies (unresolved at the natural seeing of arcsec), placing the pair at . We can rule out emission lines contributing all of the observed broadband flux in band at , allowing us to exclude the candidate as a low redshift interloper with broadband photometry dominated by strong emission lines. The…
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