NIR spectroscopic survey of protostellar jets in the star forming region IC 1396N
Fabrizio Massi (1), Rosario L\'opez (2), Maria T. Beltr\'an (1),, Robert Estalella (2), Josep M. Girart (3, 4) ((1) INAF - Osservatorio, Astrofisico di Arcetri, (2) Universitat de Barcelona, (3) Institut de, Ci\`encies de l'Espai, (4) Institut d'Estudis Espacials de Catalunya)

TL;DR
This study uses near-infrared spectroscopy to analyze the kinematics and physical conditions of H$_2$ outflows in the star-forming region IC 1396N, revealing shock excitation, jet precession, and bow-shock structures.
Contribution
First detailed spectroscopic characterization of H$_2$ outflows and jet dynamics in IC 1396N, linking physical conditions with outflow morphology.
Findings
H$_2$ emission is shock-excited with rich ro-vibrational spectra.
Most outflows are close to the plane of the sky with varying radial velocities.
Evidence of jet precession and bow-shock structures in the outflows.
Abstract
Abridged. The bright-rimmed cloud IC1396N hosts CO, H, and Herbig-Haro outflows powered by millimetre compact sources. We aim to characterise the kinematics and physical conditions of the H emission features spread over IC1396N, which appear as chains of knots with a jet-like morphology, tracing different H outflows, and to obtain further information about (and an identification of) the driving sources. Low-resolution, long-slit near-infrared spectra were acquired with NICS at the TNG, using grisms KB (R~1200), HK and JH (R~500). Several slit pointings and PA were used throughout IC1396N to sample a number of the H knots previously detected in deep H 2.12 m images. The knots exhibit rich ro-vibrational spectra of H, consistent with shock-excited excitation, from which radial velocities and relevant physical conditions of the IC1396N H outflows were…
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