Metallicity Gradient of a Lensed Face-on Spiral Galaxy at Redshift 1.49
T.-T. Yuan (1), L. J. Kewley (1), A. M. Swinbank (2), J. Richard, (2,3), R. C. Livermore (2) ((1) IfA, Hawaii (2) Durham, UK (3) Dark Cosmology, Centre, Niels Bohr Institute)

TL;DR
This study measures the metallicity gradient of a gravitationally lensed face-on spiral galaxy at redshift 1.49, revealing a steep gradient that supports inside-out disk formation in early universe galaxies.
Contribution
First measurement of metallicity gradient in a z~1.5 face-on spiral galaxy using adaptive optics and gravitational lensing.
Findings
Steep metallicity gradient of -0.16 dex/kpc at z~1.5
Galaxy exhibits a well-supported rotating disk with V_{rot}/σ~4
Results support inside-out galaxy formation scenario at high redshift.
Abstract
We present the first metallicity gradient measurement for a grand-design face-on spiral galaxy at z~1.5. This galaxy has been magnified by a factor of 22 by a massive, X-ray luminous galaxy cluster MACS\,J1149.5+2223 at z=0.544. Using the Laser Guide Star Adaptive Optics aided integral field spectrograph OSIRIS on KECK II, we target the Halpha emission and achieve a spatial resolution of 0.1", corresponding to a source plane resolution of 170 pc. The galaxy has well-developed spiral arms and the nebular emission line dynamics clearly indicate a rotationally supported disk with V_{rot}/\sigma~4. The best-fit disk velocity field model yields a maximum rotation of V_{rot} sin{i}=15015 km s^{-1}, and a dynamical mass of M_{dyn}=1.3\pm10^{\circ}$. Based on the [NII] and Halpha ratios, we…
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