English

H I content of selected mid-infrared bright, starburst blue compact dwarf galaxies

Astrophysics of Galaxies 2023-10-04 v1

Abstract

We report measurements of H I content in 11 nearby, actively star-forming, blue compact dwarf galaxies (BCDs) from 21 cm observations with the Arecibo telescope. These BCDs, selected by their red (W2[4.6 μ\mum]-W3[12 μ\mum]>>3.8 mag) and bright mid-infrared (MIR) emission (W4[22 μ\mum]<< 7.6 mag), have high specific star formation rates (median sSFR \sim107.8^{-7.8} yr1^{-1}), similar to high redshift galaxies. H I emission was detected in six sources. We analyze our new detections in the context of previous H I observations of 218 dwarf irregulars (dIs) and BCDs in the literature. The MHIM_{\rm HI}-MM_{\ast} relation resulting from our observations confirms the dominating fraction of H I gas among baryons in galaxies with lower stellar masses. This Arecibo BCD sample has significantly lower median H I depletion timescales (τHI\tau_{\rm HI}\sim 0.3 Gyr) than other dIs/BCDs (\sim 6.3 Gyr) in the literature. The majority of the sources (10/11) in the Arecibo sample are very red in W1[3.4 μ\mum]-W2[4.6 μ\mum] colour (>> 0.8 mag) implying the presence of warm dust. We investigate the relation of τHI\tau_{\rm HI} with stellar mass (MM_{\ast}) and sSFR. We find that τHI\tau_{\rm HI} is significantly anti-correlated with MM_{\ast} for higher sSFR (>>108.5^{-8.5} yr1^{-1}) and with sSFR for higher stellar mass (>107.5M>10^{7.5}\,{\rm M}_{\odot}) dwarf galaxies. The high sSFR for the BCDs in the Arecibo observed sample is mainly due to their high atomic gas star formation efficiency (SFE) or low τHI\tau_{\rm HI}. The low τHI\tau_{\rm HI} or high SFE in these sources is possibly due to runaway star formation in compact and dense super star clusters.

Keywords

Cite

@article{arxiv.2310.02202,
  title  = {H I content of selected mid-infrared bright, starburst blue compact dwarf galaxies},
  author = {Yogesh Chandola and Di Li and Chao-Wei Tsai and Guodong Li and Yingjie Peng and Pei Zuo and Travis McIntyre and Yin-Zhe Ma and Daniel Stern and Roger Griffith and Thomas Jarrett and Peter Eisenhardt and Chantal Balkowski},
  journal= {arXiv preprint arXiv:2310.02202},
  year   = {2023}
}

Comments

17(12+5) pages, 7(6+1)figures, 6(4+2) tables, accepted for publication in MNRAS