English

Bowshocks driven by the pole-on molecular jet of outbursting protostar SVS 13

Astrophysics of Galaxies 2025-12-17 v1 Solar and Stellar Astrophysics

Abstract

Outflows play a key role in the star and planet formation processes. Some outflows show discrete clumps of cold molecular gas moving at extremely high velocities (EHVs) of \sim100 km s1^{-1}, known as ''molecular bullets'', that are likely closely associated with their primary driving agent. Here we present ALMA CO(J=3-2) observations of a bright EHV molecular bullet that reveal its morphology in detail down to scales of 30 au and its kinematic structure across the entire intermediate velocity range (\sim30-100 km s1^{-1}). These provide important new insights into how outflows transfer mass and momentum to the surrounding medium. The observed channel maps display several sequences of ring-like features whose velocity increases and size decreases with projected distance from the driving source, each sequence tracing a thin, bow-shaped shell culminating on-axis in a bright EHV head. The shape, kinematics, and mass of each shell all agree remarkably well with the simplest textbook models of momentum-conserving bowshocks produced by a time-variable EHV jet. The dynamical timescale between consecutive shells is of a few decades, with the latest ejection event coinciding with the protostar optical/IR outburst observed in \sim1990. The very strong evidence for bowshock-driven entrainment induced by jet variability revealed by this work suggests that accretion bursts, and therefore variations in the disk snowlines, should occur on decade timescales, which could substantially impact grain growth and planet formation.

Keywords

Cite

@article{arxiv.2512.14458,
  title  = {Bowshocks driven by the pole-on molecular jet of outbursting protostar SVS 13},
  author = {G. Blázquez-Calero and G. Anglada and S. Cabrit and M. Osorio and A. C. Raga and G. A. Fuller and J. F. Gómez and R. Estalella and A. K. Diaz-Rodriguez and J. M. Torrelles and L. F. Rodríguez and E. Macías and I. de Gregorio-Monsalvo and S. T. Megeath and L. Zapata and P. T. P. Ho},
  journal= {arXiv preprint arXiv:2512.14458},
  year   = {2025}
}

Comments

61 pages, 19 Figures, 2 Tables. Published in Nature Astronomy: https://www.nature.com/articles/s41550-025-02716-2