论文标题

SAMI Galaxy调查:电离气体和恒星速度分散剂之间的差异

The SAMI Galaxy Survey: the difference between ionised gas and stellar velocity dispersions

论文作者

Oh, Sree, Colless, Matthew, D'Eugenio, Francesco, Croom, Scott M., Cortese, Luca, Groves, Brent, Kewley, Lisa J., van de Sande, Jesse, Zovaro, Henry, Varidel, Mathew R., Barsanti, Stefania, Brough, Sarah, Bryant, Julia J., Casura, Sarah, Lawrence, Jon S., Lorente, Nuria P. F., Medling, Anne M., Owers, Matt S., Yi, Sukyoung K.

论文摘要

我们研究了带有恒星群众$ \ log \ \ log \,(m _*/m _*/m _*/m _ {\ odot})\ geq 9.5 $ Sami counses的1090个星系,调查了离子气体($σ_{\ rm GAS} $)和星星($σ_*$)的平均局部测量速度分散。对于星形的星系,$σ_*$往往大于$σ_ {\ rm Gas} $,这表明恒星通常比电离气体(不对称漂移)动态热动态热。 $σ_ {\ rm Gas} $和$σ_*$($δσ$)之间的差异与各种星系属性相关。我们确定$Δσ$的最强相关性与梁涂片的最强相关性,该光束涂抹,$σ_ {\ rm as Gas} $高于$σ_*$,引入了$Δσ$的依赖性,相对于点差梯度和速度梯度,$δσ$对有效半径的依赖性。第二个最严重的相关性是与活性银河核(AGN)(或进化的恒星)对离子气体发射的贡献,这意味着气体速度分散体受到电源的强烈影响。相反,使用从集成光谱($σ_{\ rm aper} $)测得的速度分散剂会导致基于孔径的$δσ$($δσ_{\ rm aper} $)和电源源之间的相关性较小。这表明AGN(或旧恒星)会动态加热气体,而不会引起与动态平衡的显着偏差。尽管$δσ_{\ rm aper} $的变化远小于$δσ$,但仍检测到$δσ_{\ rm aper} $与气体速度梯度之间的相关性,这意味着,这意味着从斯特尔拉尔(Stellar)的动态质量产生了一个小的偏见。

We investigate the mean locally-measured velocity dispersions of ionised gas ($σ_{\rm gas}$) and stars ($σ_*$) for 1090 galaxies with stellar masses $\log\,(M_*/M_{\odot}) \geq 9.5$ from the SAMI Galaxy Survey. For star-forming galaxies, $σ_*$ tends to be larger than $σ_{\rm gas}$, suggesting that stars are in general dynamically hotter than the ionised gas (asymmetric drift). The difference between $σ_{\rm gas}$ and $σ_*$ ($Δσ$) correlates with various galaxy properties. We establish that the strongest correlation of $Δσ$ is with beam smearing, which inflates $σ_{\rm gas}$ more than $σ_*$, introducing a dependence of $Δσ$ on both the effective radius relative to the point spread function and velocity gradients. The second-strongest correlation is with the contribution of active galactic nuclei (AGN) (or evolved stars) to the ionised gas emission, implying the gas velocity dispersion is strongly affected by the power source. In contrast, using the velocity dispersion measured from integrated spectra ($σ_{\rm aper}$) results in less correlation between the aperture-based $Δσ$ ($Δσ_{\rm aper}$) and the power source. This suggests that the AGN (or old stars) dynamically heat the gas without causing significant deviations from dynamical equilibrium. Although the variation of $Δσ_{\rm aper}$ is much smaller than that of $Δσ$, a correlation between $Δσ_{\rm aper}$ and gas velocity gradient is still detected, implying there is a small bias in dynamical masses derived from stellar and ionised gas velocity dispersions.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源