arXiv Analytics

Sign in

arXiv:2203.00023 [astro-ph.HE]AbstractReferencesReviewsResources

Global Kinetic Modeling of the Intrabinary Shock in Spider Pulsars

Jorge Cortés, Lorenzo Sironi

Published 2022-02-28Version 1

Spider pulsars are compact binary systems composed of a millisecond pulsar and a low-mass companion. The relativistic magnetically-dominated pulsar wind impacts onto the companion, ablating it and slowly consuming its atmosphere. The interaction forms an intrabinary shock, a proposed site of particle acceleration. We perform global fully-kinetic particle-in-cell simulations of the intrabinary shock, assuming that the pulsar wind consists of plane-parallel stripes of alternating polarity and that the shock wraps around the companion. We find that particles are efficiently accelerated via shock-driven reconnection. We extract first-principles synchrotron spectra and lightcurves which are in good agreement with X-ray observations: (1) the synchrotron spectrum is nearly flat, $F_\nu\propto {\rm const}$; (2) when the pulsar spin axis is nearly aligned with the orbital angular momentum, the light curve displays two peaks, just before and after the pulsar eclipse (pulsar superior conjunction), separated in phase by $\sim 0.8\, {\rm rad}$; (3) the peak flux exceeds the one at inferior conjunction by a factor of ten. We demonstrate that the double-peaked signature in the lightcurve is due to Doppler boosting in the post-shock flow.

Related articles: Most relevant | Search more
arXiv:2404.03700 [astro-ph.HE] (Published 2024-04-03)
Particle Acceleration and Nonthermal Emission at the Intrabinary Shock of Spider Pulsars. I: Non-Radiative Simulations
arXiv:2501.08387 [astro-ph.HE] (Published 2025-01-14)
Particle Acceleration and Nonthermal Emission at the Intrabinary Shock of Spider Pulsars. II: Fast-Cooling Simulations
arXiv:2307.06330 [astro-ph.HE] (Published 2023-07-12)
Quantifying irradiation in spider pulsars: the extreme case of PSR J1622-0315