English

PSR J1906+0746: From relativistic spin-precession to beam modeling

High Energy Astrophysical Phenomena 2015-06-12 v1

Abstract

Shortly after the discovery of PSR J1906+0746, some hints of profile variations were already interpreted as first signs of relativistic spin-precession occuring. Using observations from the Nan\c{c}ay, Arecibo and Green Bank Radio Observatories, we report here the measurement of pulse profile and polarimetric variations. Using the Rotating Vector Model, we show that PSR J1906+0746 is likely to be an orthogonal rotator (α80\alpha \simeq 80^\circ). Fitting our polarimetric data to a precession model, we determined the geometry of the pulsar and found a wide misalignment angle (δ=8944+85\delta = 89_{-44}^{+85} deg, 95% C.L.), although the uncertainty is large. Assuming this geometry, we constructed the beam maps of both magnetic poles.

Keywords

Cite

@article{arxiv.1211.3937,
  title  = {PSR J1906+0746: From relativistic spin-precession to beam modeling},
  author = {Gregory Desvignes and Michael Kramer and Ismaël Cognard and Laura Kasian and Joeri van Leeuwen and Ingrid Stairs and Gilles Theureau},
  journal= {arXiv preprint arXiv:1211.3937},
  year   = {2015}
}

Comments

Proceedings of IAUS 291 "Neutron Stars and Pulsars: Challenges and Opportunities after 80 years", J. van Leeuwen (ed.); 4 pages, 3 figures