TDCOSMO. XI. New lensing galaxy redshift and velocity dispersion measurements from Keck spectroscopy of eight lensed quasar systems
P. Mozumdar, C. D. Fassnacht, T. Treu, C. Spiniello, and A. J. Shajib

TL;DR
This study measures redshifts and velocity dispersions of eight lens galaxies using Keck spectroscopy, improving data quality for quasar-galaxy lens systems to refine Hubble constant estimates via time-delay strong lensing.
Contribution
It introduces a forward modeling method to extract cleaner spectra of lens galaxies from blended ground-based observations, providing new measurements for six previously unmeasured systems.
Findings
Redshifts and velocity dispersions for eight lens galaxies measured.
Six systems had no prior velocity dispersion data; two measurements confirmed previous results.
New redshifts determined for two deflectors, enhancing lens system datasets.
Abstract
We have measured the redshifts and single-aperture velocity dispersions of eight lens galaxies using the data collected by the Echellette Spectrograph and Imager (ESI) and Low Resolution Imaging Spectrometer (LRIS) at W.M. Keck observatory on different observing nights spread over three years (2018-2020). These results, combined with other ancillary data, such as high-resolution images of the lens systems, and time delays, are necessary to increase the sample size of the quasar-galaxy lens systems for which the Hubble constant can be measured, using the time-delay strong lensing method, hence increasing the precision of its inference. Typically, the 2D spectra of the quasar-galaxy lens systems get spatially blended due to seeing by ground-based observations. As a result, the extracted lensing galaxy (deflector) spectra become significantly contaminated by quasar light, which affects the…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Scientific Measurement and Uncertainty Evaluation
