Study of Dust and Ionized gas in Early-type Galaxies
arXiv:1402.5545 · doi:10.1016/j.newast.2014.01.003
Abstract
We present results of optical broad-band and narrow-band Halpha observations of a sample of forty nearby early-type galaxies. The majority of sample galaxies are known to have dust in various forms viz. dust lanes, nuclear dust and patchy/filamentary dust. A detailed study of dust was performed for 12 galaxies with prominent dust features. The extinction curves for these galaxies run parallel to the Galactic extinction curve, implying that the properties of dust in these galaxies are similar to those of the Milky-Way. The ratio of total to selective extinction (Rv) varies between 2.1 and 3.8, with an average of 2.9 +/- 0.2, fairly close to its canonical value of 3.1 for our Galaxy. The average relative grain size <a>/a_Gal of dust particles in these galaxies turns out to be 1.01 +/- 0.2, while dust mass estimated using optical extinction lies in the range 10^2 to 10^4 M(sun) . The Halpha emission was detected in 23 out of 29 galaxies imaged through narrow- band filters with the Halpha luminosities in the range 10^38 - 10^41 erg s^-1. The mass of the ionized gas is in the range 10^3-10^5 M(sun). The morphology and extent of ionized gas is found similar to those of dust, indicating possible coexistence of dust and ionized gas in these galaxies. The absence of any apparent correlation between blue luminosity and normalized IRAS dust mass is suggestive of merger related origin of dust and gas in these galaxies.
28 pages, 6 figures; Accepted for publication in New Astronomy. Please cite this article in press as: Kulkarni, S., et al. New Astron. (2014), http://dx.doi.org/10.1016/j.newast.2014.01.003
References in corpus (16)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- The Atlas3D project -- IV: the molecular gas content of early-type galaxies
- Neutral hydrogen in nearby elliptical and lenticular galaxies: the continuing formation of early-type galaxies
- The SAURON project - XII. Kinematic substructures in early-type galaxies: evidence for disks in fast rotators
- Molecular Gas and Star Formation in the SAURON Early-type Galaxies
- Early-type galaxies in different environments: an HI view
- Molecular gas and star formation in early-type galaxies
- The Atlas3D project - V. The CO Tully-Fisher relation of early-type galaxies
- X-ray Properties of Young Early Type Galaxies: I. X-ray Luminosity Function of LMXBs
- Ionized gas in E/S0 galaxies with dust lanes
- Properties of dust in early-type galaxies
- Continuum removal in Hα extragalactic measurements
- Determining the extragalactic extinction law with SALT. II. Additional sample
- NGC3801 caught in the act: A post-merger starforming early-type galaxy with AGN-jet feedback
- Dust and Ionized Gas Association in E/S0 Galaxies with Dust Lanes: Clues to their Origin
- The progenitor set of present-day early-type galaxies
Cited by in corpus (15)
- Raining on black holes and massive galaxies: the top-down multiphase condensation model
- Extragalactic dispersion measures of fast radio bursts
- Thermodynamic properties, multiphase gas and AGN feedback in a large sample of giant ellipticals
- Spiral-like star-forming patterns in CALIFA early-type galaxies
- VLA Radio Study of a Sample of Nearby X-ray and Optically Bright Early-Type Galaxies
- MUSE stares into the shadows: the high-resolution dust attenuation curve of NGC 5626
- The dustier early-type galaxies deviate from late-type galaxies' scaling relations
- A Virgo Environmental Survey Tracing Ionised Gas Emission (VESTIGE).XII. Ionised gas emission in the inner regions of lenticular galaxies
- The Fornax 3D project: dust mix and gas properties in the center of early-type galaxy FCC 167
- An extremely low gas-to-dust ratio in the dust-lane lenticular galaxy NGC 5485
- ALMA observations of massive molecular gas reservoirs in dusty early-type galaxies
- Evidence for shock-heated gas in the Taffy Galaxies and Bridge from Optical Emission-Line IFU spectroscopy
- NGC4370: a case study for testing our ability to infer dust distribution and mass in nearby galaxies
- Dust and star formation in the centre of NGC 3311
- Probing the interstellar medium of NGC1569 with Herschel