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October 8, 2025Proceedings of the International Astronomical Union0 citations

Evolution From Asymptotic Giant Branch to Pre-planetary Nebula: Whorled Patterns and Stellar Companions

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HKHyosun Kim

Key Points

  • CW Leonis exhibits significant optical and near-infrared light enhancements, signaling a transition in its stellar evolution.
  • Using an eccentric-orbit binary model, the study suggests possible additional companions influencing whorled pattern formation.
  • The findings from Hubble Space Telescope images reveal detailed structures in the circumstellar environment of CW Leonis.
  • Identifying phase-transition candidates at the AGB phase may enhance understanding of the AGB to pPN transition.

Abstract

Abstract Bipolar or multipolar lobes in pre-planetary nebulae (pPNe) often exhibit intertwined outer whorled patterns, resulting from stellar wind matter accumulation during the asymptotic giant branch (AGB) phase. These structures are likely triggered by stellar or substellar companions. We regard that CW Leonis currently stands at a critical transition moment, providing a vivid illustration of the progression from an AGB star in a binary system to a pPN. We have found that CW Leonis has shown significant enhancements in its optical and near-infrared light curves over the past two decades, with the recent Hubble Space Telescope image finally revealing the long-awaited central star. Utilizing an eccentric-orbit binary model, we can reproduce the position-angle dependence of the expansion velocity in the whorled pattern around CW Leonis, suggesting a nearly face-on orbital inclination. Its contradiction to the features in the innermost circumstellar envelope, corresponding to a nearly edge-on inclination, may imply the presence of an additional companion. Our updated theoretical framework explores the complexity of the whorled pattern. Further identifying and monitoring phase-transition candidates at the tip of the AGB will provide valuable insights into the AGB-pPN transition and the role of companions in shaping the morphological evolution of these stellar objects.

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Cite This Study

Hyosun Kim (2023) studied this question.

synapsesocial.com/papers/68e5d50830fda0630036afd8https://doi.org/10.1017/s1743921324000516
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