Distance, Energy, and Variability of Quasar Outflows: Two HST/COS epochs of LBQS 1206+1052
arXiv:1809.03114 · doi:10.3847/1538-4357/aad817
Abstract
We analyze new HST/COS spectra for two quasar absorption outflows seen in the quasi-stellar object LBQS 1206+1052. These data cover, for the first time, absorption troughs from , , and . From the ratio of the * to column densities, we measure the electron number density of the higher-velocity ( km s, v1400) outflow to be log() = cm and constrain the lower-velocity ( km s, v700) outflow to log() cm. The associated with the higher-velocity outflow is an order of magnitude larger than reported in prior work. We find that the previous measurement was unreliable since it was based on density-sensitive absorption troughs that were likely saturated. Using photoionization models, we determine the best -minimization fit for the ionization parameter and hydrogen column density of the higher-velocity outflow: log() = and log() = cm, respectively. We calculate from and a distance of pc from the central source to the outflow. Using an SED attenuated by the v700 outflow yields a two-phase photoionization solution for the v1400 outflow, separated by a . Otherwise, the resultant distance, mass flux, and kinetic luminosity are similar to the unattenuated case. However, the attenuated analysis has significant uncertainties due to a lack of constraints on the v700 outflow in 2017.
11 pages, 6 figures, 4 tables, accepted for publication in ApJ