The Modeling of Pulsar Magnetosphere and Radiation

Author:

Cao Gang1,Yang Xiongbang1,Zhang Li2

Affiliation:

1. Department of Mathematics, Yunnan University of Finance and Economics, Kunming 650221, China

2. Key Laboratory of Astroparticle Physics of Yunnan Province, Department of Astronomy, Yunnan University, Kunming 650091, China

Abstract

We review the recent advances in the pulsar high-energy γ-ray observation and the electrodynamics of the pulsar magnetospheres from the early vacuum model to the recent plasma-filled models by numerical simulations. The numerical simulations have made significant progress toward the self-consistent modeling of the plasma-filled magnetosphere by including the particle acceleration and radiation. The current numerical simulations confirm a near force-free magnetosphere with the particle acceleration in the separatrix near the light cylinder and the current sheet outside the light cylinder, which can provide a good match to the recent high-energy γ-ray observations. The modeling of the combined multi-wavelength light curves, spectra, and polarization are expected to provide a stronger constrain on the geometry of the magnetic field lines, the location of the particle acceleration and the emission region, and the emission mechanism in the pulsar magnetospheres.

Funder

National Natural Science Foundation of China

Program of Yunnan Province

Publisher

MDPI AG

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