On the properties of the interstellar medium in extremely metal-poor blue compact dwarf galaxies: GMOS-IFU spectroscopy and SDSS photometry of the double-knot galaxy HS 2236+1344
arXiv:1405.7070 · doi:10.1051/0004-6361/201323353
Abstract
The main goal of this study is to carry out a spatially resolved investigation of the warm interstellar medium (ISM) in the extremely metal-poor Blue Compact Dwarf (BCD) galaxy HS 2236+1344. Special emphasis is laid on the analysis of the spatial distribution of chemical abundances, emission-line ratios and kinematics of the ISM, and to the recent star-forming activity in this galaxy. This study is based on optical integral field unit spectroscopy data from Gemini Multi-Object Spectrograph at the Gemini North telescope and archival Sloan Digital Sky Survey images. The data were obtained in two different positions across the galaxy, obtaining a total 4 arcsec X 8 arcsec field which encompasses most of its ISM. Emission-line maps and broad-band images obtained in this study indicate that HS 2236+1344 hosts three Giant HII regions. Our data also reveal some faint curved features in the BCD periphery that might be due to tidal perturbations or expanding ionized-gas shells. The ISM velocity field shows systematic gradients along the major axis of the BCD, with its south-eastern and north-western half differing by ~80 km/s in their recessional velocity. The Ha and Hb equivalent width distribution in the central part of HS 2236+1344 is consistent with a very young (~3 Myr) burst. Our surface photometry analysis indicates that the ongoing starburst provides ~50% of the total optical emission, similar to other BCDs. It also reveals an underlying lower-surface brightness component with moderately red colors, which suggest that the galaxy has undergone previous star formation. We derive an integrated oxygen abundance of 12+log(O/H)=7.53\pm0.06 and a nitrogen-to-oxygen ratio of log(N/O)=-1.57\pm0.19. Our results are consistent, within the uncertainties, with a homogeneous distribution of oxygen and nitrogen within the ISM of the galaxy. (abridged)
15 pages, 16 figures, accepted for publication in A&A
References in corpus (8)
- Galaxies with Wolf-Rayet signatures in the low-redshift Universe - A survey using the Sloan Digital Sky Survey
- Extremely metal-poor star-forming galaxies. New detections and general morphological and photometric properties
- MMT observations of new extremely metal-poor emission-line galaxies in the Sloan Digital Sky Survey
- The interplay between ionized gas and massive stars in the HII galaxy IIZw70: integral field spectroscopy with PMAS
- HI and star formation in the most metal-deficient galaxies
- HI study of extremely metal-deficient dwarf galaxies. I. The Nancay Radio Telescope observations of twenty-two objects
- Luminous Compact Blue Galaxies up to z~1 in the HST Ultra Deep Field: I. Small galaxies, or blue centers of massive disks?
- Oxygen abundance variations in the system of the two blue compact dwarf galaxies SBS 0335-052E and SBS 0335-052W
Cited by in corpus (12)
- Coevolution of metallicity and star formation in galaxies to z=3.7: I. A fundamental plane
- Metallicity gradients in small and nearby spiral galaxies
- Exploring Chemical Homogeneity in Dwarf Galaxies: A VLT-MUSE study of JKB 18
- Coevolution of metallicity and star formation in galaxies to z=3.7: II. A theoretical model
- GASP VIII: Capturing the birth of a Tidal Dwarf Galaxy in a merging system at z~0.05
- Small-scale chemical abundance analysis in a blue compact dwarf galaxy SBS 1415+437
- Tidal interaction, star formation and chemical evolution in blue compact dwarf galaxy Mrk 22
- Warm ionized gas in the blue compact galaxy Haro 14 viewed by MUSE. The diverse ionization mechanisms acting in low-mass starbursts
- Arp 202: a TDG formed in a parent's extended dark matter halo?
- Understanding star formation and feedback in small galaxies. The case of the blue compact dwarf Mrk 900
- High-resolution HI mapping of nearby extremely metal-poor blue compact dwarf galaxies
- The relationship between warm and hot gas-phase metallicity in massive elliptical galaxies and the influence of AGN feedback