We present the rest-frame optical sizes of massive quiescent galaxies (QGs) at z∼4 measured at K′-band with the Infrared Camera and Spectrograph (IRCS) and AO188 on the Subaru telescope. Based on a deep multi-wavelength catalog in the Subaru XMM-Newton Deep Survey Field (SXDS), covering a wide wavelength range from the u-band to the IRAC 8.0μm over 0.7 deg2, we evaluate photometric redshift to identify massive (M⋆∼1011M⊙) galaxies with suppressed star formation. These galaxies show a prominent 4000A˚ break feature at z∼4, suggestive of an evolved stellar population. We then conduct follow-up K′-band imaging with adaptive optics for the five brightest galaxies (KAB,total=22.5∼23.4). Compared to lower redshift ones, QGs at z∼4 have smaller physical sizes of effective radii reff=0.2 to 1.8 kpc. The mean size measured by stacking the four brightest objects is reff=0.7kpc. This is the first measurement of the rest-frame optical sizes of QGs at z∼4. We evaluate the robustness of our size measurements using simulations and find that our size estimates are reasonably accurate with an expected systematic bias of ∼0.2 kpc. If we account for the stellar mass evolution, massive QGs at z∼4 are likely to evolve into the most massive galaxies today. We find their size evolution with cosmic time in a form of log(re/kpc)=−0.44+1.77log(t/Gyr). Their size growth is proportional to the square of stellar mass, indicating the size-stellar mass growth driven by minor dry mergers.
@article{arxiv.1810.00543,
title = {The rest-frame optical sizes of massive galaxies with suppressed star formation at $z\sim4$},
author = {Mariko Kubo and Masayuki Tanaka and Kiyoto Yabe and Sune Toft and Mikkel Stockmann and Carlos Gómez-Guijarro},
journal= {arXiv preprint arXiv:1810.00543},
year = {2018}
}