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UNVEILING THE STRUCTURE OF BARRED GALAXIES AT 3.6 μm WITH THE SPITZER SURVEY OF STELLAR STRUCTURE IN GALAXIES (S4G). I. DISK BREAKS.

Authors :
Kim, Taehyun
Gadotti, Dimitri A.
Sheth, Kartik
Athanassoula, E.
Bosma, Albert
Lee, Myung Gyoon
Madore, Barry F.
Elmegreen, Bruce
Knapen, Johan H.
Zaritsky, Dennis
Ho, Luis C.
Comerón, Sébastien
Holwerda, Benne
Hinz, Joannah L.
Muñoz-Mateos, Juan-Carlos
Cisternas, Mauricio
Erroz-Ferrer, Santiago
Buta, Ron
Laurikainen, Eija
Salo, Heikki
Source :
Astrophysical Journal; 02/20/2014, Vol. 782 Issue 2, p64-82, 19p
Publication Year :
2014

Abstract

We have performed two-dimensional multicomponent decomposition of 144 local barred spiral galaxies using 3.6 μm images from the Spitzer Survey of Stellar Structure in Galaxies. Our model fit includes up to four components (bulge, disk, bar, and a point source) and, most importantly, takes into account disk breaks. We find that ignoring the disk break and using a single disk scale length in the model fit for Type II (down-bending) disk galaxies can lead to differences of 40% in the disk scale length, 10% in bulge-to-total luminosity ratio (B/T), and 25% in bar-to-total luminosity ratios. We find that for galaxies with B/T ⩾ 0.1, the break radius to bar radius, r<subscript>br</subscript>/R<subscript>bar</subscript>, varies between 1 and 3, but as a function of B/T the ratio remains roughly constant. This suggests that in bulge-dominated galaxies the disk break is likely related to the outer Lindblad resonance of the bar and thus moves outward as the bar grows. For galaxies with small bulges, B/T < 0.1, r<subscript>br</subscript>/R<subscript>bar</subscript> spans a wide range from 1 to 6. This suggests that the mechanism that produces the break in these galaxies may be different from that in galaxies with more massive bulges. Consistent with previous studies, we conclude that disk breaks in galaxies with small bulges may originate from bar resonances that may be also coupled with the spiral arms, or be related to star formation thresholds. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0004637X
Volume :
782
Issue :
2
Database :
Complementary Index
Journal :
Astrophysical Journal
Publication Type :
Academic Journal
Accession number :
94388081
Full Text :
https://doi.org/10.1088/0004-637X/782/2/64