The SOFIA Massive(SOMA)Radio Survey. III. Radio Emission from Intermediate-Mass Protostars

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Main Authors: Sequeira-Murillo, Francisco, Rosero, Viviana, Marvil, Joshua, Tan, Jonathan C., Fedriani, Ruben, Zhang, Yichen, Gorai, Prasanta, De Buizer, James M., Beltrán, Maria T.
Format: Preprint
Published: 2025
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author Sequeira-Murillo, Francisco
Rosero, Viviana
Marvil, Joshua
Tan, Jonathan C.
Fedriani, Ruben
Zhang, Yichen
Gorai, Prasanta
De Buizer, James M.
Beltrán, Maria T.
author_facet Sequeira-Murillo, Francisco
Rosero, Viviana
Marvil, Joshua
Tan, Jonathan C.
Fedriani, Ruben
Zhang, Yichen
Gorai, Prasanta
De Buizer, James M.
Beltrán, Maria T.
contents We present results from Very Large Array (VLA) radio continuum observations of twelve intermediate-mass (IM) protostars, as part of the \textit{SOFIA} Massive Star Formation Survey. Using these observations, we studied their morphology, multiplicity and radio spectral energy distributions (SEDs). Across our target regions, we resolve multiple compact sources and report eight new detections, four of which are entirely new and four that have counterparts at other wavelengths, but are detected here for the first time at radio frequencies. Based on radio morphologies and spectral indices, we assess the nature of the detected sources, highlighting seven that display jet-like structures and spectral indices consistent with ionized jets. Combining our results with the SOMA Radio I and II results, we expand the overall sample to 29 protostars, covering a bolometric luminosity range from $L_{\rm bol}\sim 10^2$ to $10^6\:L_\odot$. These sources help define a potential evolutionary sequence in the radio versus bolometric luminosity diagram. IM protostars have radio luminosities that are lower than expected from a simple power law extrapolation from low-mass protostars. However, this result is consistent with theoretical expectations from protostellar evolution models, which show low levels of photoionization and reduced shock ionization emission due to expanded stellar radii during this phase. Overall our expanded SOMA Radio sample provides new constraints on theoretical models of massive protostellar evolution, especially the connection to ionized gas structures.
format Preprint
id arxiv_https___arxiv_org_abs_2512_08105
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The SOFIA Massive(SOMA)Radio Survey. III. Radio Emission from Intermediate-Mass Protostars
Sequeira-Murillo, Francisco
Rosero, Viviana
Marvil, Joshua
Tan, Jonathan C.
Fedriani, Ruben
Zhang, Yichen
Gorai, Prasanta
De Buizer, James M.
Beltrán, Maria T.
Solar and Stellar Astrophysics
Astrophysics of Galaxies
We present results from Very Large Array (VLA) radio continuum observations of twelve intermediate-mass (IM) protostars, as part of the \textit{SOFIA} Massive Star Formation Survey. Using these observations, we studied their morphology, multiplicity and radio spectral energy distributions (SEDs). Across our target regions, we resolve multiple compact sources and report eight new detections, four of which are entirely new and four that have counterparts at other wavelengths, but are detected here for the first time at radio frequencies. Based on radio morphologies and spectral indices, we assess the nature of the detected sources, highlighting seven that display jet-like structures and spectral indices consistent with ionized jets. Combining our results with the SOMA Radio I and II results, we expand the overall sample to 29 protostars, covering a bolometric luminosity range from $L_{\rm bol}\sim 10^2$ to $10^6\:L_\odot$. These sources help define a potential evolutionary sequence in the radio versus bolometric luminosity diagram. IM protostars have radio luminosities that are lower than expected from a simple power law extrapolation from low-mass protostars. However, this result is consistent with theoretical expectations from protostellar evolution models, which show low levels of photoionization and reduced shock ionization emission due to expanded stellar radii during this phase. Overall our expanded SOMA Radio sample provides new constraints on theoretical models of massive protostellar evolution, especially the connection to ionized gas structures.
title The SOFIA Massive(SOMA)Radio Survey. III. Radio Emission from Intermediate-Mass Protostars
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2512.08105