Dust properties in the cold and hot gas phases of the ATLAS3D early-type galaxies as revealed by AKARI
arXiv:1812.09468 · doi:10.1051/0004-6361/201833911
Abstract
The properties of the dust in the cold and hot gas phases of early-type galaxies (ETGs) are key to understand ETG evolution. We thus conducted a systematic study of the dust in a large sample of local ETGs, focusing on relations between the dust and the molecular, atomic, and X-ray gas of the galaxies, as well as their environment. We estimated the dust temperatures and masses of the 260 ETGs from the ATLAS3D survey, using fits to their spectral energy distributions primarily constructed from AKARI measurements. We also used literature measurements of the cold (CO and HI) and X-ray gas phases. Our ETGs show no correlation between their dust and stellar masses, suggesting inefficient dust production by stars and/or dust destruction in X-ray gas. The global dust-to-gas mass ratios of ETGs are generally lower than those of late-type galaxies, likely due to dust-poor HI envelopes in ETGs. They are also higher in Virgo Cluster ETGs than in group and field ETGs, but the same ratios measured in the central parts of the galaxies only are independent of galaxy environment. Slow-rotating ETGs have systematically lower dust masses than fast-rotating ETGs. The dust masses and X-ray luminosities are correlated in fast-rotating ETGs, whose star formation rates are also correlated with the X-ray luminosities. The correlation between dust and X-rays in fast-rotating ETGs appears to be caused by residual star formation, while slow-rotating ETGs are likely well evolved, and thus exhausting their dust. These results appear consistent with the postulated evolution of ETGs, whereby fast-rotating ETGs form by mergers of late-type galaxies and associated bulge growth, while slow-rotating ETGs form by (dry) mergers of fast-rotating ETGs. Central cold dense gas appears to be resilient against ram pressure stripping, suggesting that Virgo Cluster ETGs may not suffer strong related star formation suppression.
18 pages, 7 figures, accepted for publication in A&A
References in corpus (13)
- Dust Masses, PAH Abundances, and Starlight Intensities in the SINGS Galaxy Sample
- The SAURON project -- IX. A kinematic classification for early-type galaxies
- A systematic variation of the stellar initial mass function in early-type galaxies
- The SAURON project -- X. The orbital anisotropy of elliptical and lenticular galaxies: revisiting the (V/sigma,epsilon) diagram with integral-field stellar kinematics
- Molecular Gas and Star Formation in the SAURON Early-type Galaxies
- The ATLAS3D Project - XXVIII. Dynamically-driven star formation suppression in early-type galaxies
- The Ĝ Infrared Search for Extraterrestrial Civilizations with Large Energy Supplies. III. The Reddest Extended Sources in WISE
- The Far-Infrared All-Sky Survey Maps
- The Complete Local Volume Groups Sample - I. Sample Selection and X-ray Properties of the High-Richness Subsample
- The origin of the atomic and molecular gas contents of early-type galaxies. I. A new test of galaxy formation physics
- The HI content of Early-Type Galaxies from the ALFALFA survey I. Catalogued HI sources in the Virgo cluster
- Calibration of the AKARI Far-infrared All Sky Survey Maps
- A star formation study of the ATLAS3D early-type galaxies with the AKARI all-sky survey
Cited by in corpus (5)
- The fate of the interstellar medium in early-type galaxies. I. First direct measurement of the timescale of dust removal
- Estimating the molecular gas mass of low-redshift galaxies from a combination of mid-infrared luminosity and optical properties
- Observational Evidence for Enhanced Black Hole Accretion in Giant Elliptical Galaxies
- The Elephant in the Bathtub: when the physics of star formation regulate the baryon cycle of galaxies
- Quantifying the cool ISM in radio AGNs: evidence for late-time re-triggering by galaxy mergers and interactions