High-resolution near-IR Spectral mapping with H$_{2}$ and [Fe II] lines of Multiple Outflows around LkH$\alpha$ 234
Heeyoung Oh, Tae-Soo Pyo, Bon-Chul Koo, In-Soo Yuk, Kyle F. Kaplan,, Yong-Hyun Lee, Kimberly Sokal, Gregory Mace, Chan Park, Jae-Joon Lee,, Byeong-Gon Park, Narae Hwang, Hwihyun Kim, and Daniel T. Jaffe

TL;DR
This study uses high-resolution near-IR spectroscopy to map multiple overlapping outflows in the LkHα 234 region, revealing complex interactions and multiple sources driving these jets, with detailed velocity and excitation analyses.
Contribution
It provides the first detailed spectral mapping of multiple outflows in LkHα 234, distinguishing their origins and kinematics, and confirms the presence of high-velocity H2 gas from jets rather than ambient material.
Findings
Identified at least three separate outflows driven by different sources.
Detected high-velocity H2 gas indicating jet origin rather than ambient gas.
Confirmed the [Fe II] jet driven by VLA 3B and its alignment.
Abstract
We present a high-resolution, near-IR spectroscopic study of multiple outflows in the LkH 234 star formation region using the Immersion GRating INfrared Spectrometer (IGRINS). Spectral mapping over the blueshifted emission of HH 167 allowed us to distinguish at least three separate, spatially overlapped, outflows in H and [Fe II] emission. We show that the H emission represents not a single jet, but complex multiple outflows driven by three known embedded sources: MM1, VLA 2, and VLA 3. There is a redshifted H outflow at a low velocity, 50 {\kms}, with respect to the systemic velocity of 11.5 {\kms}, that coincides with the HO masers seen in earlier radio observations two arcseconds southwest of VLA 2. We found that the previously detected [Fe II] jet with 100 {\kms} driven by VLA 3B is also detected in…
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