A feather on the hat: tracing the giant stellar stream around the Sombrero galaxy

Author:

Martínez-Delgado David1,Román Javier123,Erkal Denis4ORCID,Schirmer Mischa5ORCID,Roca-Fàbrega Santi6,Laine Seppo7,Donatiello Giuseppe8,Jimenez Manuel9,Malin David10,Carballo-Bello Julio A11

Affiliation:

1. Instituto de Astrofísica de Andalucía, CSIC, E-18080 Granada, Spain

2. Instituto de Astrofísica de Canarias, c/ Vía Láctea s/n, E-38205 La Laguna, Tenerife, Spain

3. Departamento de Astrofísica, Universidad de La Laguna, E-38206 La Laguna, Tenerife, Spain

4. Department of Physics, University of Surrey, Guildford GU2, 7XH, UK

5. Max-Planck Institute for Astronomy, Königstuhl 17, D-69117, Heidelberg, Germany

6. Departamento de Física de la Tierra y Astrofísica, Universidad Complutense de Madrid, E-28040 Madrid, Spain

7. IPAC, Mail Code 314-6, Caltech, 1200 E. California Blvd., Pasadena, CA 91125, USA

8. UAI - Unione Astrofili Italiani /P.I. Sezione Nazionale di Ricerca Profondo Cielo, I-72024 Oria, Italy

9. MJ Observatory, E-16001 Cuenca, Spain

10. Former AAO, Macquarie University, 105 Delhi Rd, North Ryde, NSW 2113, Australia

11. Instituto de Alta Investigación, Sede Esmeralda, Universidad de Tarapacá, Av. Luis Emilio Recabarren 2477, Iquique, Chile

Abstract

ABSTRACT Recent evidence of extremely metal-rich stars found in the Sombrero galaxy (M104) halo suggests that this galaxy has undergone a recent major merger with a relatively massive galaxy. In this paper, we present wide-field deep images of the M104 outskirts obtained with a 18-cm amateur telescope with the purpose of detecting any coherent tidal features from this possible major merger. Our new data, together with a model of the M104 inner halo and scattered light from stars around the field, allow us to trace for the first time the full path of the stream on both sides of the disc of the galaxy. We fully characterize the ring-like tidal structure and we confirm that this is the only observable coherent substructure in the inner halo region. This result is in agreement with the hypothesis that M104 was created by a wet major merger more than 3.5 Gyr ago that heated up the stellar population, blurring all old substructure. We generated a set of numerical models that reproduce the formation of the observed tidal structure. Our best-fitting model suggests the formation of this stream in the last 3 Gyr is independent of the wet major merger that created the M104 system. Therefore, the formation of the tidal stream can put a constraint on the time when the major merger occurred.

Funder

Spanish State Research Agency

Spanish Ministry of Science and Innovation

MINECO

FEDER

UE

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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