SIMBAD references

2016ApJ...833..275O - Astrophys. J., 833, 275-275 (2016/December-3)

Three-dimensional shock structure of the Orion KL outflow with IGRINS.

OH H., PYO T.-S., KAPLAN K., YUK I.-S., PARK B.-G., MACE G., PARK C., CHUN M.-Y., PAK S., KIM K.-M., OH J.S., JEONG U., YU Y.S., LEE J.-J., KIM H., HWANG N., LEE H.-I., LE H.A.N., LEE S. and JAFFE D.T.

Abstract (from CDS):

We report a study of the three-dimensional (3D) outflow structure of a 15'' x 13'' area around the H2 peak 1 in Orion KL with slit-scan observations (13 slits) using the Immersion Grating Infrared Spectrograph. The datacubes have a high-velocity resolution (∼7.5 km s–1), provide high-contrast imaging within ultra-narrow bands, and enable the detection of the main stream of the previously reported H2 outflow fingers. We identified 31 distinct fingers in the H2 1-0 S(1) λ2.122 µm emission. The line profile at each finger shows multiple-velocity peaks with a strong low-velocity component around the systemic velocity at VLSR = +8 km s–1 and high-velocity emission (|VLSR| = 45-135 km s–1), indicating a typical bow-shock. The observed radial velocity gradients of ∼4 km s–1 arcsec–1 agree well with the velocities inferred from large-scale proper motions, where the projected motion is proportional to the distance from a common origin. We construct a conceptual 3D map of the fingers with estimated inclination angles of 57deg-74deg. The extinction difference (ΔAv > 10 mag) between blueshifted and redshifted fingers indicates high internal extinction. The extinction, the overall angular spread, and the scale of the flow argue for an ambient medium with a very high density (105-106 cm–3), consistent with molecular line observations of the Orion Molecular Cloud core. The radial velocity gradients and the 3D distributions of the fingers together support the hypothesis of a simultaneous radial explosion of the Orion KL outflow.

Abstract Copyright: © 2016. The American Astronomical Society. All rights reserved.

Journal keyword(s): ISM: individual objects: OMC-1 peak 1 - ISM: jets and outflows - ISM: molecules - stars: formation - techniques: spectroscopic - techniques: spectroscopic

Simbad objects: 14

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