论文标题

SDSS-IV漫画:螺旋星系中的空间解决灰尘衰减

SDSS-IV MaNGA: spatially resolved dust attenuation in spiral galaxies

论文作者

Greener, Michael J., Aragón-Salamanca, Alfonso, Merrifield, Michael R., Peterken, Thomas G., Fraser-McKelvie, Amelia, Masters, Karen L., Krawczyk, Coleman M., Boardman, Nicholas F., Boquien, Médéric, Andrews, Brett H., Brinkmann, Jonathan, Drory, Niv

论文摘要

由于尘埃几何形状的局部变化,恒星螺旋星系中的尘埃衰减会以不同的方式影响恒星和气体。我们介绍了232种此类恒星螺旋星系样品的尘埃衰减的空间分辨测量,这些星系是从SDSSS-IV漫画调查中获得的光谱得出的。将影响这些星系恒星种群的尘埃衰减(使用全光谱恒星种群拟合方法获得)与气体的灰尘衰减进行了比较(源自Balmer减少)。这两种衰减措施都增加了恒星形成率较高的星系的当地区域;影响恒星种群的尘埃衰减比气体中的尘埃衰减更大,导致尘埃衰减的比率影响了恒星种群与气体的尘埃衰减,从而减少了恒星形成率较高的星系区域的局部星系区域。在星系的螺旋臂和臂间区域之间的任何这些灰尘衰减量中,没有系统的差异。尽管气体中的尘埃衰减和影​​响恒星种群的尘埃衰减都随着半乳突半径而降低,但两次数量的比率不会随半径而变化。但是,随着星系的恒星质量的增加,该比率确实会系统地降低。对两种尘埃衰减措施的径向剖面的分析表明,靠近星形螺旋星系中心的出生云浓度不高(掺入气体,年轻的恒星和块状灰尘)。

Dust attenuation in star-forming spiral galaxies affects stars and gas in different ways due to local variations in dust geometry. We present spatially resolved measurements of dust attenuation for a sample of 232 such star-forming spiral galaxies, derived from spectra acquired by the SDSS-IV MaNGA survey. The dust attenuation affecting the stellar populations of these galaxies (obtained using full spectrum stellar population fitting methods) is compared with the dust attenuation in the gas (derived from the Balmer decrement). Both of these attenuation measures increase for local regions of galaxies with higher star formation rates; the dust attenuation affecting the stellar populations increases more so than the dust attenuation in the gas, causing the ratio of the dust attenuation affecting the stellar populations to the dust attenuation in the gas to decrease for local regions of galaxies with higher star formation rate densities. No systematic difference is discernible in any of these dust attenuation quantities between the spiral arm and inter-arm regions of the galaxies. While both the dust attenuation in the gas and the dust attenuation affecting the stellar populations decrease with galactocentric radius, the ratio of the two quantities does not vary with radius. This ratio does, however, decrease systematically as the stellar mass of the galaxy increases. Analysis of the radial profiles of the two dust attenuation measures suggests that there is a disproportionately high concentration of birth clouds (incorporating gas, young stars and clumpy dust) nearer to the centres of star-forming spiral galaxies.

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