The Near-Ultraviolet Spectra of FU Orionis Accretion Disks

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Main Authors: Carvalho, Adolfo S., Hillenbrand, Lynne A., Herczeg, Gregory J., France, Kevin
Format: Preprint
Published: 2025
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author Carvalho, Adolfo S.
Hillenbrand, Lynne A.
Herczeg, Gregory J.
France, Kevin
author_facet Carvalho, Adolfo S.
Hillenbrand, Lynne A.
Herczeg, Gregory J.
France, Kevin
contents We present the results of the first high-sensitivity NUV (1800 to 3200 Å) survey of FU Ori objects, using the \textit{Hubble Space Telescope} (HST) STIS spectrograph. We compare new low resolution spectra for 6 sources with predictions from accretion disk models and find that all show emission in excess of the disk model spectrum. The physical properties of the NUV emission excess are very consistent among the sample, with a mean luminosity of $10^{-1.11 \pm 0.4} \ L_\odot$ and temperature of $16400 \pm 2600$ K -- despite spanning 0.9 dex in $M_*$, 1.3 dex in $\dot{M}$, and 0.7 dex in $L_\mathrm{acc}$. We use the spectra to conclusively rule out the existence of a hot boundary layer in FU Ori accretion disks. We then discuss the source of the excess emission in the context of recent simulations of FU Ori outbursts and boundary layer accretion. The UV spectra also show the often-seen \ion{C}{2}] 2326 Å multiplet and \ion{Mg}{2} 2796/2803 Å doublet, as well as the unusual \ion{Fe}{2}] 2507/2509 Å doublet, a feature that is not seen in the existing UV spectra of other young stellar objects. We measure and compare the luminosities of these lines in outbursting with those in non-outbursting objects.
format Preprint
id arxiv_https___arxiv_org_abs_2510_23390
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Near-Ultraviolet Spectra of FU Orionis Accretion Disks
Carvalho, Adolfo S.
Hillenbrand, Lynne A.
Herczeg, Gregory J.
France, Kevin
Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
We present the results of the first high-sensitivity NUV (1800 to 3200 Å) survey of FU Ori objects, using the \textit{Hubble Space Telescope} (HST) STIS spectrograph. We compare new low resolution spectra for 6 sources with predictions from accretion disk models and find that all show emission in excess of the disk model spectrum. The physical properties of the NUV emission excess are very consistent among the sample, with a mean luminosity of $10^{-1.11 \pm 0.4} \ L_\odot$ and temperature of $16400 \pm 2600$ K -- despite spanning 0.9 dex in $M_*$, 1.3 dex in $\dot{M}$, and 0.7 dex in $L_\mathrm{acc}$. We use the spectra to conclusively rule out the existence of a hot boundary layer in FU Ori accretion disks. We then discuss the source of the excess emission in the context of recent simulations of FU Ori outbursts and boundary layer accretion. The UV spectra also show the often-seen \ion{C}{2}] 2326 Å multiplet and \ion{Mg}{2} 2796/2803 Å doublet, as well as the unusual \ion{Fe}{2}] 2507/2509 Å doublet, a feature that is not seen in the existing UV spectra of other young stellar objects. We measure and compare the luminosities of these lines in outbursting with those in non-outbursting objects.
title The Near-Ultraviolet Spectra of FU Orionis Accretion Disks
topic Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
url https://arxiv.org/abs/2510.23390