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SDSS-IV MaNGA: Properties of galaxies with kinematically decoupled stellar and gaseous components

Authors :
Jin, Yifei
Chen, Yanmei
Shi, Yong
Tremonti, C. A.
Bershady, M. A.
Merrifield, M.
Emsellem, E.
Fu, Hai
Wake, D.
Bundy, K.
Lin, Lihwai
Argudo-Fernandez, M.
Huang, Song
Stark, D. V.
Storchi-Bergmann, T.
Bizyaev, D.
Brownstein, J.
Chisholm, J.
Guo, Qi
Hao, Lei
Hu, Jian
Li, Cheng
Li, Ran
Masters, K. L.
Malanushenko, E.
Pan, Kaike
Riffel, R. A.
Roman-Lopes, A.
Simmons, A.
Thomas, D.
Wang, Lan
Westfall, K.
Yan, Renbin
Source :
2016MNRAS.463..913J
Publication Year :
2016

Abstract

We study the properties of 66 galaxies with kinematically misaligned gas and stars from MaNGA survey. The fraction of kinematically misaligned galaxies varies with galaxy physical parameters, i.e. M*, SFR and sSFR. According to their sSFR, we further classify these 66 galaxies into three categories, 10 star-forming, 26 "Green Valley" and 30 quiescent ones. The properties of different types of kinematically misaligned galaxies are different in that the star-forming ones have positive gradient in D4000 and higher gas-phase metallicity, while the green valley/quiescent ones have negative D4000 gradients and lower gas-phase metallicity on average. There is evidence that all types of the kinematically misaligned galaxies tend to live in more isolated environment. Based on all these observational results, we propose a scenario for the formation of star forming galaxies with kinematically misaligned gas and stars - the progenitor accretes misaligned gas from a gas-rich dwarf or cosmic web, the cancellation of angular momentum from gas-gas collisions between the pre-existing gas and the accreted gas largely accelerates gas inflow, leading to fast centrally-concentrated star-formation. The higher metallicity is due to enrichment from this star formation. For the kinematically misaligned green valley and quiescent galaxies, they might be formed through gas-poor progenitors accreting kinematically misaligned gas from satellites which are smaller in mass.<br />Comment: 19 pages, 11 figures, published in MNRAS

Details

Database :
arXiv
Journal :
2016MNRAS.463..913J
Publication Type :
Report
Accession number :
edsarx.1611.00528
Document Type :
Working Paper
Full Text :
https://doi.org/10.1093/mnras/stw2055