MINDS: The very low-mass star and brown dwarf sample -- Hidden water in carbon-dominated protoplanetary disks

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Main Authors: Arabhavi, Aditya M., Kamp, Inga, van Dishoeck, Ewine F., Henning, Thomas, Jang, Hyerin, Christiaens, Valentin, Gasman, Danny, Pascucci, Ilaria, Perotti, Giulia, Grant, Sierra L., Barrado, David, Güdel, Manuel, Lagage, Pierre-Olivier, Garatti, Alessio Caratti o, Lahuis, Fred, Waters, L. B. F. M., Kaeufer, Till, Kanwar, Jayatee, Morales-Calderón, Maria, Schwarz, Kamber, Sellek, Andrew D., Tabone, Benoît, Temmink, Milou, Vlasblom, Marissa
Format: Preprint
Published: 2025
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author Arabhavi, Aditya M.
Kamp, Inga
van Dishoeck, Ewine F.
Henning, Thomas
Jang, Hyerin
Christiaens, Valentin
Gasman, Danny
Pascucci, Ilaria
Perotti, Giulia
Grant, Sierra L.
Barrado, David
Güdel, Manuel
Lagage, Pierre-Olivier
Garatti, Alessio Caratti o
Lahuis, Fred
Waters, L. B. F. M.
Kaeufer, Till
Kanwar, Jayatee
Morales-Calderón, Maria
Schwarz, Kamber
Sellek, Andrew D.
Tabone, Benoît
Temmink, Milou
Vlasblom, Marissa
author_facet Arabhavi, Aditya M.
Kamp, Inga
van Dishoeck, Ewine F.
Henning, Thomas
Jang, Hyerin
Christiaens, Valentin
Gasman, Danny
Pascucci, Ilaria
Perotti, Giulia
Grant, Sierra L.
Barrado, David
Güdel, Manuel
Lagage, Pierre-Olivier
Garatti, Alessio Caratti o
Lahuis, Fred
Waters, L. B. F. M.
Kaeufer, Till
Kanwar, Jayatee
Morales-Calderón, Maria
Schwarz, Kamber
Sellek, Andrew D.
Tabone, Benoît
Temmink, Milou
Vlasblom, Marissa
contents Infrared observations of the inner disks around very low-mass stars (VLMS, $<$0.3$\,M_{\odot}$) have revealed a carbon-rich gas composition in the terrestrial planet-forming regions. Contrary to the typically water-rich T Tauri disk spectra, only two disks around VLMS have been observed to be water-rich among more than ten VLMS disks observed so far with JWST/MIRI. In this letter, we systematically search for the presence of water and other oxygen-bearing molecules in the JWST/MIRI spectra of ten VLMS disks from the MIRI mid-INfrared Disk Survey (MINDS). In addition to the two previously reported detections of water emission in this VLMS sample, we detect water emission in the spectra of three other sources and tentatively in one source, and we provide strong evidence for water emission in the remaining disks in the MINDS sample, most of which have bright emission from carbon-bearing molecules. We show that the $\rm C_2H_2$ emission is much stronger than that of water for sources with low luminosities, and the hydrocarbons outshine the water emission in such conditions. We propose that the appearance of water-rich vs. hydrocarbon-rich spectra is related to the location of the water reservoir in the disk relative to the main hydrocarbon reservoir. Our findings indicate that the terrestrial planet forming regions in VLMS disks have high carbon-to-oxygen ratios (C/O$>$1), but can still harbor ample water similar to those in the T Tauri disks.
format Preprint
id arxiv_https___arxiv_org_abs_2504_11425
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle MINDS: The very low-mass star and brown dwarf sample -- Hidden water in carbon-dominated protoplanetary disks
Arabhavi, Aditya M.
Kamp, Inga
van Dishoeck, Ewine F.
Henning, Thomas
Jang, Hyerin
Christiaens, Valentin
Gasman, Danny
Pascucci, Ilaria
Perotti, Giulia
Grant, Sierra L.
Barrado, David
Güdel, Manuel
Lagage, Pierre-Olivier
Garatti, Alessio Caratti o
Lahuis, Fred
Waters, L. B. F. M.
Kaeufer, Till
Kanwar, Jayatee
Morales-Calderón, Maria
Schwarz, Kamber
Sellek, Andrew D.
Tabone, Benoît
Temmink, Milou
Vlasblom, Marissa
Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
Infrared observations of the inner disks around very low-mass stars (VLMS, $<$0.3$\,M_{\odot}$) have revealed a carbon-rich gas composition in the terrestrial planet-forming regions. Contrary to the typically water-rich T Tauri disk spectra, only two disks around VLMS have been observed to be water-rich among more than ten VLMS disks observed so far with JWST/MIRI. In this letter, we systematically search for the presence of water and other oxygen-bearing molecules in the JWST/MIRI spectra of ten VLMS disks from the MIRI mid-INfrared Disk Survey (MINDS). In addition to the two previously reported detections of water emission in this VLMS sample, we detect water emission in the spectra of three other sources and tentatively in one source, and we provide strong evidence for water emission in the remaining disks in the MINDS sample, most of which have bright emission from carbon-bearing molecules. We show that the $\rm C_2H_2$ emission is much stronger than that of water for sources with low luminosities, and the hydrocarbons outshine the water emission in such conditions. We propose that the appearance of water-rich vs. hydrocarbon-rich spectra is related to the location of the water reservoir in the disk relative to the main hydrocarbon reservoir. Our findings indicate that the terrestrial planet forming regions in VLMS disks have high carbon-to-oxygen ratios (C/O$>$1), but can still harbor ample water similar to those in the T Tauri disks.
title MINDS: The very low-mass star and brown dwarf sample -- Hidden water in carbon-dominated protoplanetary disks
topic Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2504.11425