The Initial Mass Function of Lens Galaxies from Quasar Microlensing
arXiv:1910.10509 · doi:10.3847/1538-4357/ab46b8
Abstract
We present a new approach in the study of the Initial Mass function (IMF) in external galaxies based on quasar microlensing observations. We use measurements of quasar microlensing magnifications in 24 lensed quasars to estimate the average mass of the stellar population in the lens galaxies without any a priori assumption on the shape of the IMF. The estimated mean mass of the stars is (at 68\% confidence level). We use this average mass to put constraints into two important parameters characterizing the IMF of lens galaxies: the low-mass slope, , and the low-mass cutoff, . Combining these constraints with prior information based on lensing, stellar dynamics, and absorption spectral feature analysis, we calculate the posterior probability distribution for the parameters and . We estimate values for the low-mass end slope of the IMF (heavier than that of the Milky Way) and for the low-mass cutoff . These results are in good agreement with previous studies on these parameters and remain stable against the choice of different suitable priors.
The Astrophysical Journal. In press
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- The Impact of the Mass Spectrum of Lenses in Quasar Microlensing Studies. Constraints on a Mixed Population of Primordial Black Holes and Stars
- Probing compact dark matter objects with microlensing in gravitationally lensed quasars
- Abundance of LIGO/Virgo Black Holes from Microlensing Observations of Quasars with Reverberation Mapping Size Estimates