The differences between mass- and light-derived structural parameters over time for MaNGA elliptical galaxies

Author:

Ibarra-Medel H1ORCID,Avila-Reese V2ORCID,Lacerna I34ORCID,Rodríguez-Puebla A2ORCID,Vázquez-Mata J A25ORCID,Hernández-Toledo H M2,Sánchez S F2

Affiliation:

1. University of Illinois Urbana-Champaign, Department of Astronomy, 1002 W Green St, Urbana, IL 61801, USA

2. Instituto de Astronomía, Universidad Nacional Autónoma de México, A.P. 70-264, 04510 México D. F., México

3. Instituto de Astronomía y Ciencias Planetarias, Universidad de Atacama, Copayapu 485, Copiapó, Chile

4. Millennium Institute of Astrophysics, Nuncio Monsenor Sotero Sanz 100, Of. 104, Providencia, Santiago, Chile

5. Departamento de Física, Facultad de Ciencias, Universidad Nacional Autónoma de México, A.P. 70-264, 04510 México D. F., México

Abstract

ABSTRACT We apply stellar population synthesis analysis to obtain spatially resolved archaeological inferences for a large sample of ‘red and dead’ Elliptical galaxies (Classical Ellipticals, CLEs) from the MaNGA/SDSS-IV DR15 survey. From their 2D stellar light and mass maps, we explore the differences between the radial mass and light distributions in the rest-frame bands g, r, and i as functions of look-back time, tlb, or redshift, z. We characterize these differences through the ratios between the following mass- and light-derived global properties: sizes, concentrations, and effective surface densities. We find that the mass-to-light ratios of these properties change with tlb, more the more massive the galaxies are. The CLE galaxy archaeological progenitors are, on average, less compact, concentrated, and dense in light than in mass as z decreases. However, at later times, when also the evolution of the progenitors becomes passive at all radii, there is an upturn in these trends and the differences between mass and light in compactness/concentration decrease towards z ∼ 0. The trends in the ratios of mass-to-light sizes agree qualitatively with results from direct observations in galaxy surveys at different redshifts. We discuss the caveats and interpretations of our results, and speculate that the strong structural evolution found in some previous studies for early-type galaxies could be explained partially by photometric changes rather than by intrinsic structural changes.

Funder

Carnegie Mellon University

Harvard-Smithsonian Center for Astrophysics

University of Tokyo

Lawrence Berkeley National Laboratory

University of Virginia

University of Washington

Vanderbilt University

Yale University

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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