English

Imaging of HH80-81 jet in the NIR shock tracers H$_2$ and [Fe II]

Solar and Stellar Astrophysics 2023-01-25 v1 Astrophysics of Galaxies

Abstract

The HH80-81 system is one of the most powerful jets driven by a massive protostar. We present new near-infrared (NIR) line imaging observations of the HH80-81 jet in the H2_2 (2.122 μ\mum) and [Fe II] (1.644 μ\mum) lines. These lines trace not only the jet close to the exciting source but also the knots located farther away. We have detected nine groups of knot-like structures in the jet including HH80 and HH81 spaced 0.20.90.2-0.9 pc apart. The knots in the northern arm of the jet show only [Fe II] emission closer to the exciting source, a combination of [Fe II] and H2_2 at intermediate distances, and solely H2_2 emission farther outwards. Towards the southern arm, all the knots exhibit both H2_2 and [Fe II] emission. The nature of the shocks is inferred by assimilating the NIR observations with radio and X-ray observations from literature. In the northern arm, we infer the presence of strong dissociative shocks, in the knots located close to the exciting source. The knots in the southern arm that include HH80 and HH81 are explicable as a combination of strong and weak shocks. The mass-loss rates of the knots determined from [Fe II] luminosities are in the range 3.0×1075.2×105\sim 3.0\times 10^{-7}-5.2\times 10^{-5} M_{\odot} yr1^{-1}, consistent with those from massive protostars. Towards the central region, close to the driving source of the jet, we have observed various arcs in H2_2 emission which resemble bow shocks, and strings of H2_2 knots which reveal traces of multiple outflows.

Keywords

Cite

@article{arxiv.2211.08012,
  title  = {Imaging of HH80-81 jet in the NIR shock tracers H$_2$ and [Fe II]},
  author = {Sreelekshmi Mohan and Sarita Vig and Watson P. Varricatt and Anandmayee Tej},
  journal= {arXiv preprint arXiv:2211.08012},
  year   = {2023}
}

Comments

20 pages, 5 figures, 3 tables, Accepted for publication in The Astrophysical Journal