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Diffusive Nuclear Burning on Neutron Star Envelopes

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arxiv astro-ph/0210218 v1 pith:ZZV3TORR submitted 2002-10-09 astro-ph

Diffusive Nuclear Burning on Neutron Star Envelopes

classification astro-ph
keywords burningdiffusivehydrogennuclearratetimescalescalculatediffusion
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We calculate the rate of hydrogen burning for neutron stars (NSs) with hydrogen atmospheres and an underlying reservoir of nuclei capable of proton capture. This burning occurs in the exponentially suppressed diffusive tail of H that extends to the hotter depths of the envelope where protons are rapidly captured. This process, which we call diffusive nuclear burning (DNB), can change the H abundance at the NS photosphere on timescales as short as $10^{2-4}$ years. In the absence of diffusion, the hydrogen at the photosphere (where $T\approx 10^6 {\rm K}$ and $\rho\sim 0.1 {\rm g cm^{-2}}$) would last for far longer than a Hubble time. Our work impacts the understanding of the evolution of surface abundances of isolated NSs, which is important to their thermal spectrum and their effective temperature-core temperature relation. In this paper, we calculate the rate of H burning when the overall consumption rate is controlled by the nuclear timescales, rather than diffusion timescales. The immediate application is for H burning on millisecond radio pulsars and in quiescence for the accreting NS Cen X-4. We will apply this work to young radio pulsars and magnetars once we have incorporated the effects of strong $B>10^{12} {\rm G}$ magnetic fields.

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Cited by 1 Pith paper

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  1. A NICER view of the millisecond pulsar PSR J2124$-$3358: evidence for a helium atmosphere

    astro-ph.HE 2026-07 conditional novelty 5.5

    X-PSI modeling of NICER/Chandra data for PSR J2124−3358 substantially prefers a helium atmosphere, giving M = 1.8 ± 0.5 M⊙ and Req = 11.7^{+2.6}_{-3.0} km with two slightly non-antipodal hot spots.