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exoALMA. XXIV. Formaldehyde Emission in Protoplanetary Disks of exoALMA Compared with Their Properties and Dynamical State

Articolo
Data di Pubblicazione:
2026
Citazione:
exoALMA. XXIV. Formaldehyde Emission in Protoplanetary Disks of exoALMA Compared with Their Properties and Dynamical State / F.M. Alarcon Pena, S. Facchini, L. Trapman, P. Curone, L. Rampinelli, S.M. Andrews, J. Bae, M. Barraza-Alfaro, M. Benisty, M. Galloway-Sprietsma, C. Hall, J.D. Ilee, G. Lodato, C. Pinte, J. Stadler, R. Teague, D.J. Wilner, K. Zhang. - In: THE ASTROPHYSICAL JOURNAL LETTERS. - ISSN 2041-8205. - 1000:1(2026 Mar 19), pp. L32.1-L32.20. [10.3847/2041-8213/ae4de0]
Abstract:
The presence of asymmetries and substructures in protoplanetary disks, revealed by both dust and gas emission, highlights the potential interplay and the broader connection between chemistry and dynamics in disk evolution. We explore multiple relationships using the nonparametric Kendall-τ correlation to examine formaldehyde (H2CO) emission with relation to stellar and disk properties for a subset of disks from the exoALMA sample. We also retrieve the H2CO column density and excitation temperature using four transitions, measured in radial bins of 100 au, and quantify the level of asymmetry in the resolved peak intensity of the H2CO emission. From our correlation analysis, we find no correlations with sufficient statistical significance. However, we identify tentative relationships that can be tested with larger samples. In particular, we report a proposed correlation (2.1σ) between stellar effective temperature and the formaldehyde excitation conditions, suggesting that, to first order, the central star dominates the nature of the H2CO emission over possible dynamical asymmetries traced by dust. Although a correlation with the stellar luminosity was also expected, a larger sample is required to confirm or refute this trend. A possible correlation with spectral type, together with the broad range of H2CO excitation temperatures within the inner 100 au of the studied disks, hint at possible multiple chemical formation pathways for H2CO, including both gas-phase reactions and ice-surface chemistry on dust grains.
Tipologia IRIS:
01 - Articolo su periodico
Elenco autori:
F.M. Alarcon Pena, S. Facchini, L. Trapman, P. Curone, L. Rampinelli, S.M. Andrews, J. Bae, M. Barraza-Alfaro, M. Benisty, M. Galloway-Sprietsma, C. Hall, J.D. Ilee, G. Lodato, C. Pinte, J. Stadler, R. Teague, D.J. Wilner, K. Zhang
Autori di Ateneo:
ALARCON PENA FELIPE MAURICIO ( autore )
FACCHINI STEFANO ( autore )
LODATO GIUSEPPE ( autore )
RAMPINELLI LUNA ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/1229042
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/1229042/3285607/Alarco%BFn_2026_ApJL_1000_L32.pdf
Progetto:
Unveiling the infancy of planetary systems (UNVEIL)
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Settore PHYS-05/A - Astrofisica, cosmologia e scienza dello spazio
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