Early Planet Formation in Embedded Disks (eDisk). XI. A high-resolution view toward the BHR 71 Class 0 protostellar wide binary
Sacha Gavino, Jes K. J{\o}rgensen, Rajeeb Sharma, Yao-Lun Yang,, Zhi-Yun Li, John J. Tobin, Nagayoshi Ohashi, Shigehisa Takakuwa, Adele, Plunkett, Woojin Kwon, Itziar de Gregorio-Monsalvo, Zhe-Yu Daniel Lin,, Alejandro Santamar\'ia-Miranda, Yusuke Aso, Jinshi Sai (Insa Choi)

TL;DR
This study uses high-resolution ALMA observations to analyze the structure, kinematics, and outflows of the embedded binary protostellar system BHR 71, revealing complex outflow features and setting limits on disk presence.
Contribution
First high-resolution ALMA imaging of BHR 71 binary revealing detailed disk and outflow structures, and constraining protostellar masses and disk properties.
Findings
No clear Keplerian disks detected, upper mass limits set.
Distinct outflow components, including a double helical jet in IRS1.
Episodic accretion indicated by knotty jet structure in IRS2.
Abstract
We present Atacama Large Millimeter/submillimeter Array (ALMA) observations of the binary Class 0 protostellar system BHR 71 IRS1 and IRS2 as part of the Early Planet Formation in Embedded Disks (eDisk) ALMA Large Program. We describe the CO (=2--1), CO (=2--1), CO (=2--1), HCO (--), and SiO (=5--4) molecular lines along with the 1.3 mm continuum at high spatial resolution (0.08" or 5 au). Dust continuum emission is detected toward BHR 71 IRS1 and IRS2, with a central compact component and extended continuum emission. The compact components are smooth and show no sign of substructures such as spirals, rings or gaps. However, there is a brightness asymmetry along the minor axis of the presumed disk in IRS1, possibly indicative of an inclined geometrically and optically thick disk-like component. Using a…
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