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Publication details

Document type
Journal articles

Document subtype
Full paper

Title
Structural analysis of massive galaxies using HST deep imaging at z < 0.5

Participants in the publication
Sandra N. dos Reis (Author)
IA
Fernando Buitrago (Author)
Dep. Física
IA
Polychronis Papaderos (Author)
IA
Israel Matute (Author)
Dep. Física
IA
José Afonso (Author)
Dep. Física
IA
Stergios Amarantidis (Author)
IA
Iris Breda (Author)
Jean M. Gomes (Author)
Andrew Humphrey (Author)
Catarina Lobo (Author)
Silvio Lorenzoni (Author)
IA
Cirino Pappalardo (Author)
Dep. Física
IA
Ana Paulino-Afonso (Author)
Tom Scott (Author)

Summary
Context. The most massive galaxies (Mstellar ≥ 1011 M?) in the local Universe are characterized by a bulge-dominated morphology and old stellar populations, in addition to being confined to a tight mass-size relation. Identifying their main components can provide insights into their formation mechanisms and subsequent mass assembly.\\nAims: Taking advantage of Hubble Space Telescope (HST) CANDELS data, we analyze the lowest redshift (z < 0.5) massive galaxies in the H and I band in order to disentangle their structural constituents and study possible faint non-axisymmetric features.\\nMethods: Our final sample consists of 17 massive galaxies. Due to the excellent HST spatial resolution for intermediate redshift objects, they are hard to model by purely automatic parametric fitting algorithms. We performed careful single and double (bulge-disk decompositions) Sérsic fits to their galaxy surface brightness profiles. We compare the model color profiles with the observed ones and also derive multi-component global effective radii attempting to obtain a better interpretation of the mass-size relation. Additionally, we test the robustness of our measured structural parameters via simulations.\\nResults: We find that the Sérsic index does not offer a good proxy for the visual morphological type for our sample of massive galaxies. Our derived multi-component effective radii give a better description of the size of our sample galaxies than those inferred from single Sérsic models with GALFIT. Our galaxy population lies on the scatter of the local mass-size relation, indicating that these massive galaxies have not experienced a significant growth in size since z ∼ 0.5. Interestingly, the few outliers are late-type galaxies, indicating that spheroids must reach the local mass-size relation earlier. For most of our sample galaxies, both single- and multi-component Sérsic models with GALFIT show substantial systematic deviations from the observed surface brightness profiles in the outskirts. These residuals may be partly due to several factors, namely a nonoptimal data reduction for low surface brightness features or the existence of prominent stellar haloes for massive galaxies, or they could also arise from conceptual shortcomings of parametric 2D image decomposition tools. They consequently propagate into galaxy color profiles. This is a significant obstacle to the exploration of the structural evolution of galaxies, which calls for a critical assessment and refinement of existing surface photometry techniques.

Date of Publication
2020-01-28

Where published
Astronomy & Astrophysics

Publication Identifiers
ISSN - 0004-6361

Publisher
EDP Sciences

Volume
634

Starting page
A11

Document Identifiers
DOI - https://doi.org/10.1051/0004-6361/201936276
URL - http://dx.doi.org/10.1051/0004-6361/201936276

Rankings
SCIMAGO Q1 (2019) - 2.174 - Astronomy and Astrophysics
SCIMAGO Q1 (2019) - 2.174 - Space and Planetary Science
SCOPUS Q1 (2019) - 9.5 - Astronomy and Astrophysics
SCOPUS Q1 (2019) - 9.5 - Space and Planetary Science
Web Of Science Q1 (2019) - 5.636 - ASTRONOMY & ASTROPHYSICS - SCIE


Export

APA
Sandra N. dos Reis, Fernando Buitrago, Polychronis Papaderos, Israel Matute, José Afonso, Stergios Amarantidis, Iris Breda, Jean M. Gomes, Andrew Humphrey, Catarina Lobo, Silvio Lorenzoni, Cirino Pappalardo, Ana Paulino-Afonso, Tom Scott, (2020). Structural analysis of massive galaxies using HST deep imaging at z < 0.5. Astronomy & Astrophysics, 634, ISSN 0004-6361. eISSN . http://dx.doi.org/10.1051/0004-6361/201936276

IEEE
Sandra N. dos Reis, Fernando Buitrago, Polychronis Papaderos, Israel Matute, José Afonso, Stergios Amarantidis, Iris Breda, Jean M. Gomes, Andrew Humphrey, Catarina Lobo, Silvio Lorenzoni, Cirino Pappalardo, Ana Paulino-Afonso, Tom Scott, "Structural analysis of massive galaxies using HST deep imaging at z < 0.5" in Astronomy & Astrophysics, vol. 634, 2020. 10.1051/0004-6361/201936276

BIBTEX
@article{45882, author = {Sandra N. dos Reis and Fernando Buitrago and Polychronis Papaderos and Israel Matute and José Afonso and Stergios Amarantidis and Iris Breda and Jean M. Gomes and Andrew Humphrey and Catarina Lobo and Silvio Lorenzoni and Cirino Pappalardo and Ana Paulino-Afonso and Tom Scott}, title = {Structural analysis of massive galaxies using HST deep imaging at z < 0.5}, journal = {Astronomy & Astrophysics}, year = 2020, volume = 634 }