We report the detection of OH 1667 MHz and wide HI 21cm absorption at z∼0.67 towards the red quasar 1504+377, with the Green Bank Telescope and the Giant Metrewave Radio Telescope. The HI 21cm absorption extends over a velocity range of ∼600 km/s blueward of the quasar redshift (z=0.674), with the new OH 1667 MHz absorption component at ∼−430 \kms, nearly coincident with earlier detections of mm-wave absorption at z∼0.6715. The atomic and molecular absorption appear to arise from a fast gas outflow from the quasar, with a mass outflow rate M˙∼12M⊙ yr−1 and a molecular hydrogen fraction fH2≡(NH2/NHI)∼0.2. The radio structure of 1504+377 is consistent with the outflow arising due to a jet-cloud interaction, followed by rapid cooling of the cloud material. The observed ratio of HCO+ to OH column densities is ∼20 times higher than typical values in Galactic and high-z absorbers. This could arise due to small-scale structure in the outflowing gas on sub-parsec scales, which would also explain the observed variability in the HI 21cm line.
@article{arxiv.0710.3224,
title = {Outflowing atomic and molecular gas at $z \sim 0.67$ towards 1504+377},
author = {Nissim Kanekar and Jayaram N. Chengalur},
journal= {arXiv preprint arXiv:0710.3224},
year = {2009}
}
Comments
5 pages, 4 figures, accepted for publication in MNRAS (Letters)