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January 1, 1989The Astrophysical Journal202 citations

Accretion turnoff and rapid evaporation of very light secondaries in low-mass X-ray binaries

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MRM. RudermanJSJ. ShahamMTM. Tavani

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Abstract

The illumination of companion stars in very low mass X-ray binaries by various kinds of radiation from the neighborhood of the neutron star after accretion has terminated or during accretion is considered. If a neutron star's spun-up period approaches 0.001 s, pulsar kHz radiation can quench accretion by pushing surrounding plasma away from the neutron star, and may leave the companion to be evaporated by the high-energy radiation component expected from an 'isolated' millisecond radiopulsar. Expected accretion-powered MeV gamma-rays and e(+ or -) winds may also be effective in evaporating dwarf companions. Neutron star spin-down energy release may sustain the power in these radiation mechanisms even while accretion falls. Accretion-powered soft X-rays may speed the mass loss of highly evolved dwarf companions, particularly those with a large fraction of carbon and oxygen.

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Cite This Study

Ruderman et al. (1989) studied this question.

synapsesocial.com/papers/6a2024d4f8c30f43cdfbf154https://doi.org/10.1086/167029
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