Hostname: page-component-848d4c4894-ttngx Total loading time: 0 Render date: 2024-05-21T10:28:19.601Z Has data issue: false hasContentIssue false

Probing the black hole - bulge relationship at high redshift with CO molecular lines

Published online by Cambridge University Press:  21 March 2013

Xue-Bing Wu*
Affiliation:
Department of Astronomy, Peking University, Beijing 100871, China email: wuxb@pku.edu.cn
Rights & Permissions [Opens in a new window]

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

It has been suggested that the CO line width (FWHM(CO)) is a surrogate for the bulge velocity dispersion (σ) of the host galaxies of high-redshift quasars, and the black hole – bulge (M−σ) relation obtained with this assumption departs significantly from the M−σ relation in the local universe. Based on an investigation of the correlation between the CO line width and the bulge velocity dispersion using a sample of 33 nearby Seyfert galaxies, we find that the formula adopted in previous studies, σ=FWHM(CO)/2.35, is generally not a good approximation. By involving the galactic inclination angle i as an additional parameter, we obtain a tight correlation between the inclination-corrected CO line width and the bulge velocity dispersion, namely, FWHM(CO)/sin i=−67.16±80.18+(3.62±0.68)σ. Using this new relation, we can better estimate the bulge velocity dispersion from the CO line width if the galactic inclination is known. We apply this new relation to nine high-redshift quasars with CO line detections and find that they are consistent with the local M−σ relation if their inclination angles are around 15°. The possible smaller inclinations of the high-redshift quasars are preferred because of their relatively greater likelihood of detection, and are also consistent with their relatively smaller CO line widths compared to the submillimeter galaxies (SMGs) at high redshift having a similar total amount of molecular gas.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2013

References

Wu, X.-B. 2007, ApJ, 657, 177CrossRefGoogle Scholar