A model for the flaring radio emission in the double pulsar system J0737-3039
arXiv:astro-ph/0406609 · doi:10.1086/425339
Abstract
The binary J0737-3039 A & B includes two pulsars in a highly relativistic orbit. The pulsed radio flux from pulsar B brightens considerably during two portions of each orbit. This phenomenon cannot be naturally triggered by the illumination of -rays or X-rays from pulsar A or the bow shock around pulsar B. Instead, we explain these periodic flares quantitatively as episodes during which pairs from pulsar A's wind flow into the open field line region of pulsar B and emit curvature radiation at radio frequencies within an altitude of cm. The radio photons then travel through B's magnetosphere and eventually reach the observer on the other side of the pulsar. Our model requires that A's wind be anisotropic and that B's spin axis be somewhat misaligned relative to the orbital angular momentum. We estimate the expected -ray and X-ray emission from the system.
ApJ Letters, in press
References in corpus (1)
Cited by in corpus (12)
- Long-term variations in the pulse emission from PSR J0737-3039B
- Reversals of radio emission direction in PSR B1822-09
- Orbital modulation of emission of the binary pulsar J0737-3039B
- Is the Bursting Radio-source GCRT J1745-3009 a Double Neutron Star Binary ?
- X-ray emission from the double neutron star binary B1534+12: Powered by the pulsar wind?
- Effects of Rotation and Relativistic Charge Flow on Pulsar Magnetospheric Structure
- Radio Emission Region Exposed: Courtesy of the Double Pulsar
- PSR J0737-3039: Interacting Pulsars in X-Rays
- Hubble Space Telescope detection of the double pulsar system J0737-3039 in the far-ultraviolet
- Constraining the optical emission from the double pulsar system J0737-3039
- Long Term Study of the Double Pulsar J0737-3039 with XMM-Newton: pulsar timing
- Probing the properties of the pulsar wind via studying the dispersive effects in the pulses from the pulsar companion in a double neutron-star binary system