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◆ The Astrophysical Journal2026-03-12· Magnetar

Late-blooming Magnetars: Awakening as Long-period Transients after a Dormant Cooling Epoch

Arthur G. Suvorov, Clara Dehman, J. A. Pons

原始摘要(英文原文)· Original abstract
Abstract Long-period transients are an elusive class of compact objects uncovered by radio surveys. While magnetars are a leading candidate for those sources that appear isolated, several observational properties challenge the established evolutionary framework: (i) low quiescent X-ray luminosities, (ii) ∼hour-long rotational periods, and (iii) highly variable radio flux. It is shown via magnetothermal modeling that, if electric currents thread the fluid core at the time of crust freezing, the neutron star remains multiband silent for an initial period of approximately 0.1 Myr while cooling passively. Once the crust becomes cold enough, the Hall effect begins to dominate the magnetic evolution, triggering crustal failures that inject magnetospheric twist that initiates radio pulsing while depleting rotational kinetic energy from an already slow star. Depending on where electric currents circulate, such “late-blooming” magnetars manifesting as long-period transients may thus form a distinct branch from soft gamma repeaters and anomalous X-ray pulsars.
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Late-blooming Magnetars: Awakening as Long-period Transients after a Dormant Cooling Epoch — 科研速览 Science Skim