English

Interstellar scintillations of PSR B1919+21: space-ground interferometry

Solar and Stellar Astrophysics 2017-05-10 v3 High Energy Astrophysical Phenomena Instrumentation and Methods for Astrophysics

Abstract

We carried out observations of pulsar PSR B1919+21 at 324 MHz to study the distribution of interstellar plasma in the direction of this pulsar. We used the RadioAstron (RA) space radiotelescope together with two ground telescopes: Westerbork (WB) and Green Bank (GB). The maximum baseline projection for the space-ground interferometer was about 60000 km. We show that interstellar scintillation of this pulsar consists of two components: diffractive scintillations from inhomogeneities in a layer of turbulent plasma at a distance z1=440z_{1} = 440 pc from the observer or homogeneously distributed scattering material to pulsar; and weak scintillations from a screen located near the observer at z2=0.14±0.05z_{2} = 0.14 \pm 0.05 pc. Furthermore, in the direction to the pulsar we detected a prism that deflects radiation, leading to a shift of observed source position. We show that the influence of the ionosphere can be ignored for the space-ground baseline. Analysis of the spatial coherence function for the space-ground baseline (RA-GB) yielded the scattering angle in the observer plane: θscat\theta_{scat} = 0.7 mas. An analysis of the time-frequency correlation function for weak scintillations yielded the angle of refraction in the direction to the pulsar: θref,0\theta_{ref, 0} = 110 ms and the distance to the prism zprism2z_{prism} \le 2 pc.

Keywords

Cite

@article{arxiv.1605.05727,
  title  = {Interstellar scintillations of PSR B1919+21: space-ground interferometry},
  author = {V. I. Shishov and T. V. Smirnova and C. R. Gwinn and A. S. Andrianov and M. V. Popov and A. G. Rudnitskiy and V. A. Soglasnov},
  journal= {arXiv preprint arXiv:1605.05727},
  year   = {2017}
}