Understanding the universal dust attenuation scaling relation of star-forming galaxies

Jianbo Qin,Xian Zhong Zheng, Stijn Wuyts, Zongfei Lyu, Man Qiao,Jia-Sheng Huang,Feng Shan Liu, Antonios Katsianis, Valentino Gonzalez, Fuyan Bian,Haiguang Xu, Zhizheng Pan,Wenhao Liu,Qing-Hua Tan, Fang Xia An, Dong Dong Shi, Yuheng Zhang, Run Wen,Shuang Liu,Chao Yang

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY(2024)

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摘要
Star-forming galaxies (SFGs) adhere to a surprisingly tight scaling relation of dust attenuation parametrized by the infrared excess (IRX equivalent to L-IR /L-UV), being jointly determined by the star formation rate (SFR), galaxy size (R-e), metallicity (Z/Z(circle dot)), and axial ratio (b/a). We examine how these galaxy parameters determine the effective dust attenuation and give rise to the universal IRX relation, utilizing a simple two-component star-dust geometry model in which dust in the dense and diffuse interstellar medium (ISM) follows exponential mass density profiles, connected with but not necessarily identical to the stellar mass profiles. Meanwhile, empirical relations are adopted to link galaxy properties, including the gas-star formation relation, the dust-to-stellar size relation, as well as the dust-to-gas ratio versus metallicity relation. By fitting a large sample of local SFGs with the model, we obtain the best-fitting model parameters as a function of metallicity, showing that the two-component geometry model is able to successfully reproduce the dependence of IRX on SFR, R-e, b/a at given Z/Z(circle dot), as well as the dependence of power-law indices on metallicity. Moreover, we also retrieve constraints on the model geometry parameters, including the optical depth of birth clouds (BCs), BC-to-total dust mass fraction, BC covering factor of UV-emitting stars, and star-to-total dust disc radius ratio, which all evolve with galaxy metallicity. Finally, a consistent picture of how the star-dust geometry in SFGs evolves with galaxy metallicity is discussed.
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关键词
dust, extinction,galaxies: evolution,galaxies: ISM,galaxies: star formation
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