arXiv · astro-ph/0006285
Pulsar acceleration by asymmetric emission of sterile neutrinos
Abstract
A convincing explanation for the observed pulsar large peculiar velocities is still missing. We argue that any viable particle physics solution would most likely involve the resonant production of a non-interacting neutrino $ν_s$ of mass $m_{ν_s}\sim 20$--50 keV. We propose a model where anisotropic magnetic field configurations strongly bias the resonant spin flavour precession of tau antineutrinos into $ν_s$. For internal magnetic fields $B_{int} \gsim 10^{15}$ G a $\barν_τ$-$ν_s$ transition magnetic moment of the order of $10^{-12}$ Bohr magnetons is required. The asymmetric emission of $ν_s$ from the core can produce sizeable natal kicks and account for recoil velocities of several hundred kilometers per second.
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Enrico Nardi, Jorge I. Zuluaga. 2002-01-29. Pulsar acceleration by asymmetric emission of sterile neutrinos. https://doi.org/10.1086/319452
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