Resolving the molecular gas around the lensed quasar RXJ0911.4+0551
Abstract
We report on high angular resolution observations of the CO(7-6) line and millimeter continuum in the host galaxy of the gravitationally lensed (z~2.8) quasar RXJ0911.4+0551 using the Plateau de Bure Interferometer. Our CO observations resolve the molecular disk of the source. Using a lens model based on HST observations we fit source models to the observed visibilities. We estimate a molecular disk radius of 10.2 kpc and an inclination of 696\deg, the continuum is more compact and is only marginally resolved by our observations. The relatively low molecular gas mass, Msolar, and far infrared luminosity, Lsolar, of this quasar could be explained by its relatively low dynamical mass, Msolar. It would be a scaled-down version the QSOs usually found at high-z. The FIR and CO luminosities lie on the correlation found for QSOs from low to high redshifts and the gas-to-dust ratio () is similar to the one measured in the z=6.4 QSO, SDSS J1148+5251. Differential magnification affects the continuum-to-line luminosity ratio, the line profile and possibly the spectral energy distribution.
Keywords
Cite
@article{arxiv.1303.6110,
title = {Resolving the molecular gas around the lensed quasar RXJ0911.4+0551},
author = {P. T. Anh and F. Boone and D. T. Hoai and P. T. Nhung and A. Weiß and J. -P. Kneib and A. Beelen and P. Salomé},
journal= {arXiv preprint arXiv:1303.6110},
year = {2015}
}
Comments
Accepted for publication in A&A, revised after language editing