Metal-THINGS: a panchromatic analysis of the local scaling relationships of the dwarf irregular galaxy NGC 1569

Author:

Garduño L E1ORCID,Zaragoza-Cardiel J12ORCID,Lara-López M A3ORCID,Zinchenko I A45ORCID,Zerbo M C67,De Rossi M E67,Fritz Jacopo8ORCID,Dib Sami9ORCID,Pilyugin L S510,Sánchez-Cruces M11ORCID,Heesen V12ORCID,O’Sullivan S P3ORCID,López-Cruz O1,Valerdi M12ORCID,Rosado Margarita11ORCID

Affiliation:

1. Instituto Nacional de Astrofísica, Óptica y Electrónica (INAOE) , Luis Enrique Erro No.1, Tonantzintla, Pue., C.P. 72840 , México

2. Consejo Nacional de Humanidades, Ciencias y Tecnologías , Av. Insurgentes Sur 1582, 03940, Ciudad de México , Mexico

3. Departamento de Física de la Tierra y Astrofísica, Instituto de Física de Partículas y del Cosmos , IPARCOS. Universidad Complutense de Madrid (UCM), E-28040, Madrid , Spain

4. Faculty of Physics, Ludwig-Maximilians-Universität , Scheinerstr. 1, D-81679 Munich , Germany

5. Main Astronomical Observatory, National Academy of Sciences of Ukraine , 27 Akademika Zabolotnoho Str, 03680, Kiev , Ukraine

6. Universidad de Buenos Aires, Facultad de Ciencias Exactas y Naturales y Ciclo Básico Común , C1428EGA, Buenos Aires , Argentina

7. CONICET-Universidad de Buenos Aires, Instituto de Astronomía y Física del Espacio (IAFE) , Buenos Aires , Argentina

8. Instituto de Radioastronomia y Astrofisica , UNAM, Campus Morelia, A.P. 3-72, C.P. 58089, Morelia , Mexico

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

10. Institute of Theoretical Physics and Astronomy, Vilnius University , Sauletekio av. 3, 10257 Vilnius , Lithuania

11. Instituto de Astronomía, Universidad Nacional Autonoma de México , Apartado Postal 70-264, CP 04510 México, CDMX , México

12. Hamburg University, Hamburger Sternwarte , Gojenbergsweg 112, D-21029 Hamburg , Germany

Abstract

ABSTRACT We investigate several panchromatic scaling relations (SRs) for the dwarf irregular galaxy NGC 1569 using Integral Field Unit (IFU) data from the Metal-THINGS Survey. Among the spatially resolved properties analysed, we explore SRs between the stellar mass, SFR, molecular gas, total gas, baryonic mass, gas metallicity, gas fraction, SFE, and effective oxygen yields. Such multiwavelength SRs are analysed at a spatial resolution of 180 pc, by combining our IFU observations with data from the surveys THINGS, CARMA, and archival data from DustPedia. Although we recover several known relations, our slopes are different to previously reported ones. Our star formation main sequence, Kennicutt–Schmidt (KS), and molecular KS relations show higher SFRs, lower scatter, and higher correlations, with steeper (1.21), and flatter slopes (0.96, 0.58), respectively. The shape of the SRs including metallicity, stellar mass, and gas fraction are flat, with an average value of 12 + log(O/H) ∼ 8.12 dex. The baryonic mass versus effective oxygen yields, and the stellar, gas and baryonic mass versus SFE show higher dispersions and lower correlations. Since we use the dust mass as a tracer of gas mass, we derive the dust-to-gas ratio and the CO luminosity-to-molecular gas mass conversion factors, showing differences of 0.16 and 0.95 dex for the total and molecular gas surface density, respectively, in comparison to previously reported values. We use a self-regulated feedback model to conclude that stellar feedback plays an important role generating outflows in NGC 1569.

Funder

CONACYT

Comunidad de Madrid

Research Council of Lithuania

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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