The exact initial-mass boundaries depend on metallicity, convective overshooting, rotation, and mass loss, but stars near the upper intermediate-mass range, roughly --, can become Super-AGB stars. They ignite carbon but do not immediately ignite neon hydrostatically throughout the core.
Their final fate is set by competition between shell-driven core growth and envelope loss. If a stellar wind removes the envelope first, the remnant is an oxygen-neon, or oxygen-neon-magnesium, white dwarf. If the degenerate core grows toward the Chandrasekhar mass, electron captures on magnesium and neon reduce the electron pressure and can trigger an electron-capture supernova, leaving a neutron star. Slightly higher-mass stars can ignite further fuels and proceed to ordinary iron-core collapse.
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