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Mass loss from late-type WN stars and its Z-dependence: very massive stars approaching the Eddington limit

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arxiv 0803.0866 v1 pith:VP5SCTC2 submitted 2008-03-06 astro-ph

classification astro-ph
keywords starslossmasswindseddingtonstellarlimitmassive
verification ladder T0 review T1 audit T2 compute T3 formal
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The mass loss from Wolf-Rayet (WR) stars is of fundamental importance for the final fate of massive stars and their chemical yields. Its Z-dependence is discussed in relation to the formation of long-duration Gamma Ray Bursts (GRBs) and the yields from early stellar generations. However, the mechanism of formation of WR-type stellar winds is still under debate. We present the first fully self-consistent atmosphere/wind models for late-type WN stars. We investigate the mechanisms leading to their strong mass loss, and examine the dependence on stellar parameters, in particular on the metallicity Z. We identify WNL stars as very massive stars close to the Eddington limit, potentially still in the phase of central H-burning. Due to their high L/M ratios, these stars develop optically thick, radiatively driven winds. These winds show qualitatively different properties than the thin winds of OB stars. The resultant mass loss depends strongly on Z, but also on the Eddington factor, and the stellar temperature. We combine our results in a parametrized mass loss recipe for WNL stars. According to our present model computations, stars close to the Eddington limit tend to form strong WR-type winds, even at very low Z. Our models thus predict an efficient mass loss mechanism for low metallicity stars. For extremely metal-poor stars, we find that the self-enrichment with primary nitrogen can drive WR-type mass loss. These first WN stars might play an important role in the enrichment of the early ISM with freshly produced nitrogen.

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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Stellar winds of O-type stars traced by high ionization fine-structure emission lines with JWST/MIRI

    astro-ph.SR 2026-06 unverdicted novelty 7.0 of 10

    JWST/MIRI detects [Ne V] 14.3 micron emission from O-star winds in 5 of 22 observed stars, enabling wind speed and mass-loss rate estimates even in weak-wind regimes.

  2. The Stellar Winds Atlas II: Black Hole Formation at Solar Metallicity

    astro-ph.SR 2026-07 conditional novelty 6.0 of 10

    Black hole masses at solar metallicity are set by whether a star becomes a Wolf-Rayet star before collapse, and cool supergiant winds control that split.

  3. Can current models predict the local black hole merger rate?

    astro-ph.HE 2026-06 unverdicted novelty 3.0 of 10

    Theoretical predictions for local BBH merger rates exceed observations by a factor >10 under conservative SFRD and metallicity assumptions, indicating need for revisions in stellar evolution.

  4. Wolf-Rayet Colliding Wind Binaries

    astro-ph.SR 2024-12 unverdicted novelty 1.0 of 10

    A review article synthesizing observations, models, and supernova-progenitor relevance of Wolf-Rayet colliding wind binaries.

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