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      A Neutron Star-White Dwarf Binary Model for Repeating Fast Radio Burst 121102

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          Abstract

          We propose a compact binary model for the fast radio burst (FRB) repeaters, where the system consists of a magnetic white dwarf (WD) and a neutron star (NS) with strong bipolar magnetic fields. When the WD fills its Roche lobe, mass transfer will occur from the WD to the NS through the inner Lagrange point. The accreted magnetized materials may trigger magnetic reconnection when they approach the NS surface, and therefore the electrons can be accelerated to an ultra-relativistic speed. In this scenario, the curvature radiation of the electrons moving along the NS magnetic field lines can account for the characteristic frequency and the timescale of an FRB. Owing to the conservation of angular momentum, the WD may be kicked away after a burst, and the next burst may appear when the system becomes semi-detached again through the gravitational radiation. By comparing our analyses with the observations, we show that such an intermittent Roche lobe overflow mechanism can be responsible for the observed repeating behavior of FRB 121102.

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          Author and article information

          Journal
          2016-04-18
          2016-05-09
          Article
          10.3847/2041-8205/823/2/L28
          1604.05336
          ba535c42-f6a9-465e-855e-584990d85804

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          12 pages, 2 figures, accepted for publication in ApJ Letters
          astro-ph.HE

          High energy astrophysical phenomena
          High energy astrophysical phenomena

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