FAUST XXVII: The circumbinary disk and the outflow of the L 1551 IRS 5 binary system
Aurora Dur\'an, Laurent Loinard, Pedro R. Rivera-Ortiz, Geovanni Cort\'es-Rangel, Eleonora Bianchi, Paola Caselli, Cecilia Ceccarelli, Claire J. Chandler, Claudio Codella, Nicol\'as Cuello, Marta De Simone, Tomoyuki Hanawa, Doug Johnstone, Fran\c{c}ois Menard

TL;DR
This study uses ALMA data to analyze the complex structure of the L1551 IRS 5 binary system, revealing detailed properties of its disks, envelope, and outflow, and developing an analytical model to interpret its dynamics.
Contribution
It provides detailed mass estimates, constrains the centrifugal barrier, and introduces an analytical outflow model for the first time for this system.
Findings
Circumbinary disk mass: 0.018 M$_{igodot}$
Centrifugal barrier at 55 au
Outflow and envelope dynamics characterized
Abstract
Using continuum and line data obtained from the large ALMA program FAUST, we studied the structure of the protostellar binary system L1551 IRS5 at scales between 30 and 3,000 au to constrain its properties, from the circumstellar and circumbinary disks up to the envelope and outflow scales, which exhibits complex and entangled structures at the scales of its inner and outer envelopes, presumably caused by the influence of the central binary. Assuming a dust-to-gas ratio of 100, we calculated the dust+gas mass for the circumbinary disk and each circumstellar disk of the binary, obtaining 0.018 M, for the circumbinary disk, 0.004 M, and 0.002 M, for the northern and southern circumstellar disk respectively. From the line emission, we retrieved the gas masses for each structure component. With the …
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Astronomy and Astrophysical Research · Scientific Measurement and Uncertainty Evaluation
