CLASH-VLT: Insights on the mass substructures in the Frontier Fields Cluster MACS J0416.1-2403 through accurate strong lens modeling
C. Grillo, S. H. Suyu, P. Rosati, A. Mercurio, I. Balestra, E. Munari,, M. Nonino, G. B. Caminha, M. Lombardi, G. De Lucia, S. Borgani, R. Gobat, A., Biviano, M. Girardi, K. Umetsu, D. Coe, A. M. Koekemoer, M. Postman, A., Zitrin, A. Halkola, T. Broadhurst, B. Sartoris

TL;DR
This study uses detailed strong lens modeling and extensive spectroscopic data to map the mass substructures in galaxy cluster MACS J0416.1-2403, testing dark matter models and structure formation theories.
Contribution
It provides a high-resolution mass map of the cluster, incorporating spectroscopic confirmation of lensing systems and substructure analysis, which is novel in its precision and depth.
Findings
Accurate mass reconstruction with 5% uncertainty.
Detection of fewer massive subhalos than predicted by simulations.
Insights into dark matter halo profiles and substructure distribution.
Abstract
We present a detailed mass reconstruction and a novel study on the substructure properties in the core of the CLASH and Frontier Fields galaxy cluster MACS J0416.1-2403. We show and employ our extensive spectroscopic data set taken with the VIMOS instrument as part of our CLASH-VLT program, to confirm spectroscopically 10 strong lensing systems and to select a sample of 175 plausible cluster members to a limiting stellar mass of log(M_*/M_Sun) ~ 8.6. We reproduce the measured positions of 30 multiple images with a remarkable median offset of only 0.3" by means of a comprehensive strong lensing model comprised of 2 cluster dark-matter halos, represented by cored elliptical pseudo-isothermal mass distributions, and the cluster member components. The latter have total mass-to-light ratios increasing with the galaxy HST/WFC3 near-IR (F160W) luminosities. The measurement of the total…
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