SIMBAD references

2015MNRAS.454.3577M - Mon. Not. R. Astron. Soc., 454, 3577-3589 (2015/December-3)

A deep look at the nuclear region of UGC 5101 through high angular resolution mid-IR data with GTC/CanariCam.

MARTINEZ-PAREDES M., ALONSO-HERRERO A., ARETXAGA I., RAMOS ALMEIDA C., HERNAN-CABALLERO A., GONZALEZ-MARTIN O., PEREIRA-SANTAELLA M., PACKHAM C., ASENSIO RAMOS A., DIAZ-SANTOS T., ELITZUR M., ESQUEJ P., GARCIA-BERNETE I., IMANISHI M., LEVENSON N.A. and RODRIGUEZ ESPINOSA J.M.

Abstract (from CDS):

We present an analysis of the nuclear infrared (IR, 1.6-18 µm) emission of the ultraluminous IR galaxy UGC 5101 to derive the properties of its active galactic nucleus (AGN) and its obscuring material. We use new mid-IR high angular resolution (0.3-0.5 arcsec) imaging using the Si-2 filter (λC = 8.7µm) and 7.5-13 µm spectroscopy taken with CanariCam (CC) on the 10.4 m Gran Telescopio CANARIAS. We also use archival Hubble Space Telescope/NICMOS and Subaru/COMICS imaging and Spitzer/IRS spectroscopy. We estimate the near- and mid-IR unresolved nuclear emission by modelling the imaging data with galfit. We decompose the Spitzer/IRS and CC spectra using a power-law component, which represents the emission due to dust heated by the AGN, and a starburst component, both affected by foreground extinction. We model the resulting unresolved near- and mid-IR, and the starburst subtracted CC spectrum with the CLUMPY torus models of Nenkova et al. The derived geometrical properties of the torus, including the large covering factor and the high foreground extinction needed to reproduce the deep 9.7µm silicate feature, are consistent with the lack of strong AGN signatures in the optical. We derive an AGN bolometric luminosity Lbol ∼ 1.9x1045erg/s that is in good agreement with other estimates in the literature.

Abstract Copyright: © 2015 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society (2015)

Journal keyword(s): galaxies: active - galaxies: individual: UGC 5101 - galaxies: Seyfert - infrared: galaxies

Simbad objects: 8

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