English

Complex gas kinematics in compact, rapidly assembling star-forming galaxies

Cosmology and Nongalactic Astrophysics 2015-06-05 v1 Astrophysics of Galaxies

Abstract

Deep, high resolution spectroscopic observations have been obtained for six compact, strongly star-forming galaxies at redshift z~0.1-0.3, most of them also known as Green Peas. Remarkably, these galaxies show complex emission-line profiles in the spectral region including H\alpha, [NII]λλ6548,6584\lambda\lambda 6548, 6584 and [SII]λλ6717,6731\lambda\lambda 6717, 6731, consisting of the superposition of different kinematical components on a spatial extent of few kpc: a very broad line emission underlying more than one narrower component. For at least two of the observed galaxies some of these multiple components are resolved spatially in their 2D-spectra, whereas for another one a faint detached H\alpha\ blob lacking stellar continuum is detected at the same recessional velocity ~7 kpc away from the galaxy. The individual narrower H\alpha\ components show high intrinsic velocity dispersion (\sigma ~30-80 km s1^{-1}), suggesting together with unsharped masking HST images that star formation proceeds in an ensemble of several compact and turbulent clumps, with relative velocities of up to ~500 km s1^{-1}. The broad underlying H\alpha\ components indicate in all cases large expansion velocities (full width zero intensity FWZI \ge 1000 km s1^{-1}) and very high luminosities (up to ~1042^{42} erg s1^{-1}), probably showing the imprint of energetic outflows from SNe. These intriguing results underline the importance of Green Peas for studying the assembly of low-mass galaxies near and far.

Keywords

Cite

@article{arxiv.1207.0509,
  title  = {Complex gas kinematics in compact, rapidly assembling star-forming galaxies},
  author = {Ricardo Amorín and José M. Vílchez and Guillermo Hägele and Verónica Firpo and Enrique Pérez-Montero and Polychronis Papaderos},
  journal= {arXiv preprint arXiv:1207.0509},
  year   = {2015}
}

Comments

11 pages, 3 figures, and 1 Table. Accepted for publication in ApJ Letters

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