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March 1, 2026Galaxies1 citationsOpen Access

Revealing the Morpho-Kinematics of NGC 2371—A Planetary Nebula with a WR Central Star

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RVRoberto VázquezATA. Jesús ToaláLML. F. Miranda

Key Points

  • To investigate the morpho-kinematic characteristics of the planetary nebula NGC 2371 and identify shaping agents.
  • Obtained high-dispersion optical spectra using the Manchester Echelle Spectrometer.
  • Conducted 3D morpho-kinematic modelling with ShapeX.
  • Analyzed position-velocity diagrams alongside direct images to fit the model.
  • Identified multiple episodic mass-loss events contributing to the nebula's current morphology.
  • Developed a model featuring a barrel-shaped shell and bipolar lobes with misaligned low-excitation knots.
  • Determined kinematical ages ranging from 1600 to 4400 years for various structures.

Abstract

We present new high-dispersion optical spectra of the planetary nebula NGC 2371 obtained with the Manchester Echelle Spectrometer at the OAN-SPM 2.1 m telescope, complemented with 3D morpho-kinematic modelling using ShapeX. The data reveal that the present-day morphology of NGC 2371 is the outcome of multiple episodic mass-loss events rather than a single outflow. Our best-fitting model simultaneously reproduces the direct images and the Position–Velocity (PV) diagrams, and consists of a barrel-shaped shell with younger polar caps, extended bipolar lobes, and a pair of misaligned low-excitation N ii knots interpreted as jet-like ejections. The derived kinematical ages of the main structures, spanning ≃1600 to ≃4400 yr, indicate successive episodes of mass loss with different geometries and timescales. The nearly perpendicular bipolar lobes, the absence of a pronounced waist, and the surface distortions of the large-scale structures cannot be explained solely by standard axisymmetric wind interactions. Instead, our results point to a combination of shaping agents, including a late thermal pulse (born-again scenario) possibly related to the H-deficient WR-type nature of the central star, binary-driven interactions, and episodic jet activity. NGC 2371 thus provides a particularly instructive case where multiple shaping agents may operate, and where some of the relevant physical processes remain only marginally explored in current models of PN formation and evolution.

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Cite This Study

Vázquez et al. (2026) studied this question.

synapsesocial.com/papers/69a3d7eeec16d51705d2e51bhttps://doi.org/10.3390/galaxies14020015
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