A new census of dust and polycyclic aromatic hydrocarbons at z=0.7-2 with JWST MIRI

This paper utilizes the JWST MIRI multi-band imaging data from the SMILES survey (5-25micron), complemented with HST and NIRCam photometric and spectroscopic data from the JADES and FRESCO surveys for 443 star-forming (non-AGN) galaxies at z=0.7-2.0 to extend the study of dust and PAH emission to a...

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Hauptverfasser: Shivaei, Irene, Alberts, Stacey, Florian, Michael, Rieke, George, Wuyts, Stijn, Bodansky, Sarah, Bunker, Andrew J, Cameron, Alex J, Curti, Mirko, D'Eugenio, Francesco, Dudzeviciute, Ugne, Kramarenko, Ivan, Ji, Zhiyuan, Johnson, Benjamin D, Lyu, Jianwei, Matthee, Jorryt, Morrison, Jane, Naidu, Rohan, Reddy, Naveen, Robertson, Brant, Pérez-González, Pablo G, Sun, Yang, Tacchella, Sandro, Whitaker, Katherine, Williams, Christina C, Willmer, Christopher N A, Witstok, Joris, Xiao, Mengyuan, Zhu, Yongda
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creator Shivaei, Irene
Alberts, Stacey
Florian, Michael
Rieke, George
Wuyts, Stijn
Bodansky, Sarah
Bunker, Andrew J
Cameron, Alex J
Curti, Mirko
D'Eugenio, Francesco
Dudzeviciute, Ugne
Kramarenko, Ivan
Ji, Zhiyuan
Johnson, Benjamin D
Lyu, Jianwei
Matthee, Jorryt
Morrison, Jane
Naidu, Rohan
Reddy, Naveen
Robertson, Brant
Pérez-González, Pablo G
Sun, Yang
Tacchella, Sandro
Whitaker, Katherine
Williams, Christina C
Willmer, Christopher N A
Witstok, Joris
Xiao, Mengyuan
Zhu, Yongda
description This paper utilizes the JWST MIRI multi-band imaging data from the SMILES survey (5-25micron), complemented with HST and NIRCam photometric and spectroscopic data from the JADES and FRESCO surveys for 443 star-forming (non-AGN) galaxies at z=0.7-2.0 to extend the study of dust and PAH emission to a new mass and SFR parameter space beyond our local universe. We find a strong correlation between the fraction of dust in PAHs (PAH fraction, q_PAH) with stellar mass. Moreover, the PAH fraction behavior as a function of gas-phase metallicity is similar to that at z~0 from previous studies, suggesting a universal relation: q_PAH is constant (~3.4%) above a metallicity of ~ 0.5\(Z_{\odot}\) and decreases to 50% obscured fractions. At a fixed mass, the obscured fraction correlates with SFR surface density. This is a result of higher dust covering fractions in galaxies with more compact star forming regions. Similarly, galaxies with high IRX (IR to UV luminosity) at a given mass or UV continuum slope tend to have higher SFR surface density and shallower attenuation curves, owing to their higher effective dust optical depths and more compact star forming regions.
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subjects Active galactic nuclei
Compact galaxies
Correlation
Cosmic dust
Density
Dust
Emission analysis
James Webb Space Telescope
Luminosity
Metallicity
Red shift
Star formation
Stellar mass
title A new census of dust and polycyclic aromatic hydrocarbons at z=0.7-2 with JWST MIRI
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