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exoALMA. III. Line-intensity Modeling and System Property Extraction from Protoplanetary Disks

Articolo
Data di Pubblicazione:
2025
Citazione:
exoALMA. III. Line-intensity Modeling and System Property Extraction from Protoplanetary Disks / A.F. Izquierdo, J. Stadler, M. Galloway-Sprietsma, M. Benisty, C. Pinte, J. Bae, R. Teague, S. Facchini, L. Wolfer, C. Longarini, P. Curone, S.M. Andrews, M. Barraza-Alfaro, G. Cataldi, N. Cuello, I. Czekala, D. Fasano, M. Flock, M. Fukagawa, H. Garg, C. Hall, I. Hammond, T. Hilder, J. Huang, J.D. Ilee, A. Isella, K. Kanagawa, G. Lesur, G. Lodato, R.A. Loomis, R. Orihara, D.J. Price, G. Rosotti, L. Testi, H.-. Yen, G. Wafflard-Fernandez, D.J. Wilner, A.J. Winter, T.C. Yoshida, B. Zawadzki. - In: THE ASTROPHYSICAL JOURNAL LETTERS. - ISSN 2041-8205. - 984:1(2025 May 01), pp. L8.1-L8.17. [10.3847/2041-8213/adc439]
Abstract:
The ALMA large program exoALMA offers a unique window into the three-dimensional physical and dynamical properties of 15 circumstellar disks where planets may be actively forming. Here, we present an analysis methodology to map the gas disk structure and substructure encoded in 12CO, 13CO, and CS line emission from our targets. To model and characterize the disk structure probed by optically thin species, such as CS and, in some cases, 13CO, we introduce a composite line profile kernel that accounts for increased intensities caused by the projected overlap between the disk’s front and back side emission. Our workflow, built on the discminer modeling framework, incorporates an improved iterative two-component fitting method for inclined sources (i > 40∘) to mitigate the impact of the disk back side on the extraction of velocity maps. Also, we report best-fit parameters for the Keplerian stellar masses, as well as inclinations, position angles, systemic velocities, rotation direction, and emission surfaces of the disks in our sample.
Tipologia IRIS:
01 - Articolo su periodico
Elenco autori:
A.F. Izquierdo, J. Stadler, M. Galloway-Sprietsma, M. Benisty, C. Pinte, J. Bae, R. Teague, S. Facchini, L. Wolfer, C. Longarini, P. Curone, S.M. Andrews, M. Barraza-Alfaro, G. Cataldi, N. Cuello, I. Czekala, D. Fasano, M. Flock, M. Fukagawa, H. Garg, C. Hall, I. Hammond, T. Hilder, J. Huang, J.D. Ilee, A. Isella, K. Kanagawa, G. Lesur, G. Lodato, R.A. Loomis, R. Orihara, D.J. Price, G. Rosotti, L. Testi, H.-. Yen, G. Wafflard-Fernandez, D.J. Wilner, A.J. Winter, T.C. Yoshida, B. Zawadzki
Autori di Ateneo:
FACCHINI STEFANO ( autore )
LODATO GIUSEPPE ( autore )
ROSOTTI GIOVANNI PIETRO ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/1163742
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/1163742/3066432/exoALMA_III.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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Realizzato con VIVO | Progettato da Cineca | 25.11.5.0