Golden gravitational lensing systems from the Sloan Lens ACS Survey. II. SDSS J1430+4105: A precise inner total mass profile from lensing alone
Thomas Eichner, Stella Seitz, Anne Bauer

TL;DR
This study uses strong gravitational lensing data from SDSS J1430+4105 to precisely determine the galaxy's total mass profile, separating stellar and dark matter components, and comparing results with other massive galaxies.
Contribution
It provides a detailed lensing-based analysis of the mass distribution in SDSS J1430+4105, including the stellar and dark matter components, and compares the findings with stellar population models and other galaxies.
Findings
The total mass density profile is slightly shallower than isothermal.
The dark matter fraction within the Einstein radius is approximately 20-40%.
The mass-to-light ratio from lensing aligns with a Salpeter IMF.
Abstract
We study the SLACS strong lensing system SDSSJ1430+4105 at z=0.285. The lensed source (z=0.575) of this system has a complex morphology with several subcomponents. Its subcomponents span a radial range from 4 to 10kpc in the lens plane. Therefore we can constrain the slope of the total projected mass profile around the Einstein radius (R_E) from lensing alone. We measure a density profile that is slightly but not significantly shallower than isothermal at R_E. We decompose the mass of the lensing galaxy into a de Vaucouleurs (deV) component to trace the stars and an additional dark component. The spread of multiple image components over a large radial range also allows us to determine the amplitude of the deV and dark matter components separately. We get a mass to light ratio of M_deV/L_B~5.5\pm1.5M/L_sun,B and a dark matter fraction within R_E of ~20 to 40%. Modelling the star…
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