Discovery of Radio Recombination Lines from Proplyds in the Orion Nebula Cluster

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Hauptverfasser: Boyden, Ryan D., Emig, Kimberly L., Ballering, Nicholas P., Law, Charles J., Haworth, Thomas J., Tan, Jonathan C., Cleeves, L. Ilsedore, Li, Zhi-Yun
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Veröffentlicht: 2025
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author Boyden, Ryan D.
Emig, Kimberly L.
Ballering, Nicholas P.
Law, Charles J.
Haworth, Thomas J.
Tan, Jonathan C.
Cleeves, L. Ilsedore
Li, Zhi-Yun
author_facet Boyden, Ryan D.
Emig, Kimberly L.
Ballering, Nicholas P.
Law, Charles J.
Haworth, Thomas J.
Tan, Jonathan C.
Cleeves, L. Ilsedore
Li, Zhi-Yun
contents We present new Atacama Large Millimeter/submillimeter Array observations that, for the first time, detect hydrogen and helium radio recombination lines from a protoplanetary disk. We imaged the Orion Nebula Cluster at 3.1 mm with a spectral setup that covered the $n=42 \rightarrow 41$ transitions of hydrogen (H41$α$) and helium (He41$α$). The unprecedented sensitivity of these observations enables us to search for radio recombination lines toward the positions of ${\sim}200$ protoplanetary disks. We detect H41$α$ from 17 disks, all of which are HST-identified `proplyds.' The detected H41$α$ emission is spatially coincident with the locations of proplyd ionization fronts, indicating that proplyd H41$α$ emission is produced by gas that has been photoevaporated off the disk and ionized by UV radiation from massive stars. We measure the fluxes and widths of the detected H41$α$ lines and find line fluxes of ${\sim}30-800$ mJy km s$^{-1}$ and line widths of ${\sim}30-90$ km s$^{-1}$. The derived line widths indicate that the broadening of proplyd H41$α$ emission is dominated by outflowing gas motions associated with external photoevaporation. The derived line fluxes, when compared with measurements of 3.1 mm free-free flux, imply that the ionization fronts of H41$α$-detected proplyds have electron temperatures of ${\sim}6,000-11,000$ K and electron densities of ${\sim}10^6-10^7$ cm$^{-3}$. Finally, we detect He41$α$ towards one H41$α$-detected source and find evidence that this system is helium-rich. Our study demonstrates that radio recombination lines are readily detectable in ionized photoevaporating disks, providing a new way to measure disk properties in clustered star-forming regions.
format Preprint
id arxiv_https___arxiv_org_abs_2503_02979
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Discovery of Radio Recombination Lines from Proplyds in the Orion Nebula Cluster
Boyden, Ryan D.
Emig, Kimberly L.
Ballering, Nicholas P.
Law, Charles J.
Haworth, Thomas J.
Tan, Jonathan C.
Cleeves, L. Ilsedore
Li, Zhi-Yun
Earth and Planetary Astrophysics
Astrophysics of Galaxies
Solar and Stellar Astrophysics
We present new Atacama Large Millimeter/submillimeter Array observations that, for the first time, detect hydrogen and helium radio recombination lines from a protoplanetary disk. We imaged the Orion Nebula Cluster at 3.1 mm with a spectral setup that covered the $n=42 \rightarrow 41$ transitions of hydrogen (H41$α$) and helium (He41$α$). The unprecedented sensitivity of these observations enables us to search for radio recombination lines toward the positions of ${\sim}200$ protoplanetary disks. We detect H41$α$ from 17 disks, all of which are HST-identified `proplyds.' The detected H41$α$ emission is spatially coincident with the locations of proplyd ionization fronts, indicating that proplyd H41$α$ emission is produced by gas that has been photoevaporated off the disk and ionized by UV radiation from massive stars. We measure the fluxes and widths of the detected H41$α$ lines and find line fluxes of ${\sim}30-800$ mJy km s$^{-1}$ and line widths of ${\sim}30-90$ km s$^{-1}$. The derived line widths indicate that the broadening of proplyd H41$α$ emission is dominated by outflowing gas motions associated with external photoevaporation. The derived line fluxes, when compared with measurements of 3.1 mm free-free flux, imply that the ionization fronts of H41$α$-detected proplyds have electron temperatures of ${\sim}6,000-11,000$ K and electron densities of ${\sim}10^6-10^7$ cm$^{-3}$. Finally, we detect He41$α$ towards one H41$α$-detected source and find evidence that this system is helium-rich. Our study demonstrates that radio recombination lines are readily detectable in ionized photoevaporating disks, providing a new way to measure disk properties in clustered star-forming regions.
title Discovery of Radio Recombination Lines from Proplyds in the Orion Nebula Cluster
topic Earth and Planetary Astrophysics
Astrophysics of Galaxies
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2503.02979