Bibcode
                                    
                            Luo, Yuanze; Heckman, Timothy; Hwang, Hsiang-Chih; Rowlands, Kate; Sánchez-Menguiano, Laura; Riffel, Rogério; Bizyaev, Dmitry; Andrews, Brett H.; Fernández-Trincado, José G.; Drory, Niv; Sánchez Almeida, Jorge; Maiolino, Roberto; Lane, Richard R.; Argudo-Fernández, Maria
    Referencia bibliográfica
                                    The Astrophysical Journal
Fecha de publicación:
    
                        2
            
                        2021
            
  Revista
                                    
                            Número de citas
                                    21
                            Número de citas referidas
                                    19
                            Descripción
                                    While all models for the evolution of galaxies require the accretion of gas to sustain their growth via on-going star formation, it has proven difficult to directly detect this inflowing material. In this paper we use data of nearby star-forming galaxies in the SDSS IV Mapping Nearby Galaxies at Apache Point Observatory survey to search for evidence of accretion imprinted in the chemical composition of the interstellar medium. We measure both the O/H and N/O abundance ratios in regions previously identified as having anomalously low values of O/H. We show that the unusual locations of these regions in the N/O versus O/H plane indicate that they have been created through the mixing of disk gas having higher metallicity with accreted gas having lower metallicity. Taken together with previous analysis on these anomalously low-metallicity regions, these results imply that accretion of metal-poor gas can probably sustain star formation in present-day late-type galaxies.
                            Proyectos relacionados
                 
Grupo de Estudios de Formación Estelar GEFE
            
    El proyecto interno GEFE está enmarcado en el proyecto coordinado, ESTALLIDOS, financiado por el plan nacional desde el año 2001. El ultimo proyecto aprobado es ESTALLIDOS 6.0 (AYA2016- 79724-C4-2-P). En el proyecto GEFE trabajamos en base al caso científico del proyecto ESTALLIDOS 6.0. Los estallidos de formación estelar (Starbursts o SB) son
            
            Casiana
            
                        Muñoz Tuñón