Misaligned Twin Molecular Outflows From Class-0 Proto-stellar Binary System VLA 1623A Unveiled by ALMA
Chihomi Hara (NEC, Univ. of Tokyo), Ryohei Kawabe (NAOJ, SOKENDAI,, Univ. of Tokyo), Fumitaka Nakamura (NAOJ, SOKENDAI, Univ. of Tokyo), Naomi, Hirano (ASIAA), Shigehisa Takakuwa (Kagoshima Univ.), Yoshito Shimajiri, (NAOJ), Takeshi Kamazaki (NAOJ)

TL;DR
This study uses ALMA observations to reveal twin overlapping outflows from the Class-0 binary VLA 1623A, showing wiggle structures consistent with binary orbital motion and disk misalignment likely caused by turbulence.
Contribution
First detailed ALMA imaging of twin outflows from a very young protobinary, linking outflow wiggles to binary orbital parameters and disk misalignment.
Findings
Twin outflows exhibit wiggle patterns matching binary orbit.
Dense gas structures support shocked cloudlet interpretation.
Protostellar disks are misaligned by 70 degrees, challenging simple fragmentation models.
Abstract
We present the results of ALMA observations toward the low-mass Class-0 binary system, VLA 1623Aab in the Ophiuchus molecular cloud in CO, CO, and CO(2--1) lines. Our CO (=2--1) data reveal that the VLA 1623 outflow consists of twin spatially overlapped outflows/jets. The redshifted northwestern jet exhibits the three cycles of wiggle with a spatial period of 136010 au, corresponding to a time period of 180 yr. The wiggle-like structure is also found in the position-velocity (PV) diagram, showing an amplitude in velocity of about 0.9 km s. Both the period and the velocity amplitude of the wiggle are roughly consistent with those expected from the binary parameters, i.e., the orbital period (46020 yr) and the Keplerian velocity (2.2 km s). Our CO and CO images reveal the nature of the dense gas in the two cm/mm sources,…
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