What is the nature of Little Red Dots and what is not, MIRI SMILES edition

Fuente: arXiv
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Autores principales: Pérez-González, Pablo G., Barro, Guillermo, Rieke, George H., Lyu, Jianwei, Rieke, Marcia, Alberts, Stacey, Williams, Christina, Hainline, Kevin, Sun, Fengwu, Puskas, David, Annunziatella, Marianna, Baker, William M., Bunker, Andrew J., Egami, Eiichi, Ji, Zhiyuan, Johnson, Benjamin D., Robertson, Brant, Del Pino, Bruno Rodriguez, Rujopakarn, Wiphu, Shivaei, Irene, Tacchella, Sandro, Willmer, Christopher N. A., Willott, Chris
Formato: Preprint
Publicado: 2024
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author Pérez-González, Pablo G.
Barro, Guillermo
Rieke, George H.
Lyu, Jianwei
Rieke, Marcia
Alberts, Stacey
Williams, Christina
Hainline, Kevin
Sun, Fengwu
Puskas, David
Annunziatella, Marianna
Baker, William M.
Bunker, Andrew J.
Egami, Eiichi
Ji, Zhiyuan
Johnson, Benjamin D.
Robertson, Brant
Del Pino, Bruno Rodriguez
Rujopakarn, Wiphu
Shivaei, Irene
Tacchella, Sandro
Willmer, Christopher N. A.
Willott, Chris
author_facet Pérez-González, Pablo G.
Barro, Guillermo
Rieke, George H.
Lyu, Jianwei
Rieke, Marcia
Alberts, Stacey
Williams, Christina
Hainline, Kevin
Sun, Fengwu
Puskas, David
Annunziatella, Marianna
Baker, William M.
Bunker, Andrew J.
Egami, Eiichi
Ji, Zhiyuan
Johnson, Benjamin D.
Robertson, Brant
Del Pino, Bruno Rodriguez
Rujopakarn, Wiphu
Shivaei, Irene
Tacchella, Sandro
Willmer, Christopher N. A.
Willott, Chris
contents We study little red dots (LRD) detected by JADES and covered by the SMILES MIRI survey. Our sample contains 31 sources, $\sim70$% detected in the two bluest MIRI bands, 40% in redder filters. The median/quartiles redshifts are $z=6.9_{5.9}^{7.7}$ (55% spectroscopic). We analyze the rest-frame ultraviolet through near/mid-infrared spectral energy distributions of LRDs combining NIRCam and MIRI observations, using a variety of modeling techniques that include emission from stars, dust, and (un)obscured active galactic nuclei (AGN). The NIRCam$-$MIRI colors, for $\geq10$ $μ$m, are bluer than direct pure emission from AGN tori; the spectral slope flattens in the rest-frame near-infrared, consistent with a 1.6 $μ$m stellar bump. Both observations imply that stellar emission makes the dominant contribution at these wavelengths, expediting a stellar mass estimation: the median/quartiles are $\log \mathrm{M_\star/M_\odot}=9.4_{9.1}^{9.7}$. The number density of LRDs is $10^{-4.0\pm0.1}$ Mpc$^{-3}$, accounting for $14\pm3$% of the global population of galaxies with similar redshifts and masses. The flat ultraviolet spectral range is dominated by young stars. The rest-frame near/mid-infrared (2-4 $μ$m) spectral slope reveals significant amounts of dust (bolometric stellar attenuation $\sim3-4$ mag) heated by strong radiation fields arising from highly embedded compact sources. Our models imply $<0.4$ kpc heating knots, containing dust-enshrouded OB stars or an AGN producing a similar radiation field, obscured by $\mathrm{A(V)}>10$ mag. We conclude that LRDs are extremely intense and compact starburst galaxies with mass-weighted ages 5-10 Myr, very efficient in producing dust, their global energy output dominated by the direct and dust-recycled emission from OB stars, with some contribution from obscured AGN in the mid-infrared.
format Preprint
id arxiv_https___arxiv_org_abs_2401_08782
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle What is the nature of Little Red Dots and what is not, MIRI SMILES edition
Pérez-González, Pablo G.
Barro, Guillermo
Rieke, George H.
Lyu, Jianwei
Rieke, Marcia
Alberts, Stacey
Williams, Christina
Hainline, Kevin
Sun, Fengwu
Puskas, David
Annunziatella, Marianna
Baker, William M.
Bunker, Andrew J.
Egami, Eiichi
Ji, Zhiyuan
Johnson, Benjamin D.
Robertson, Brant
Del Pino, Bruno Rodriguez
Rujopakarn, Wiphu
Shivaei, Irene
Tacchella, Sandro
Willmer, Christopher N. A.
Willott, Chris
Astrophysics of Galaxies
Instrumentation and Methods for Astrophysics
We study little red dots (LRD) detected by JADES and covered by the SMILES MIRI survey. Our sample contains 31 sources, $\sim70$% detected in the two bluest MIRI bands, 40% in redder filters. The median/quartiles redshifts are $z=6.9_{5.9}^{7.7}$ (55% spectroscopic). We analyze the rest-frame ultraviolet through near/mid-infrared spectral energy distributions of LRDs combining NIRCam and MIRI observations, using a variety of modeling techniques that include emission from stars, dust, and (un)obscured active galactic nuclei (AGN). The NIRCam$-$MIRI colors, for $\geq10$ $μ$m, are bluer than direct pure emission from AGN tori; the spectral slope flattens in the rest-frame near-infrared, consistent with a 1.6 $μ$m stellar bump. Both observations imply that stellar emission makes the dominant contribution at these wavelengths, expediting a stellar mass estimation: the median/quartiles are $\log \mathrm{M_\star/M_\odot}=9.4_{9.1}^{9.7}$. The number density of LRDs is $10^{-4.0\pm0.1}$ Mpc$^{-3}$, accounting for $14\pm3$% of the global population of galaxies with similar redshifts and masses. The flat ultraviolet spectral range is dominated by young stars. The rest-frame near/mid-infrared (2-4 $μ$m) spectral slope reveals significant amounts of dust (bolometric stellar attenuation $\sim3-4$ mag) heated by strong radiation fields arising from highly embedded compact sources. Our models imply $<0.4$ kpc heating knots, containing dust-enshrouded OB stars or an AGN producing a similar radiation field, obscured by $\mathrm{A(V)}>10$ mag. We conclude that LRDs are extremely intense and compact starburst galaxies with mass-weighted ages 5-10 Myr, very efficient in producing dust, their global energy output dominated by the direct and dust-recycled emission from OB stars, with some contribution from obscured AGN in the mid-infrared.
title What is the nature of Little Red Dots and what is not, MIRI SMILES edition
topic Astrophysics of Galaxies
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2401.08782