The annular gap model under a rotating dipole field approximation: simulating gamma-ray light curve

Fuente: arXiv
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Main Authors: Tian, Jie, Xu, Xin, Zhi, Qijun, Lu, Jiguang, Dang, Shijun, Yang, Ke, Wei, Xiao, Qiao, Guojun
Format: Preprint
Published: 2026
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author Tian, Jie
Xu, Xin
Zhi, Qijun
Lu, Jiguang
Dang, Shijun
Yang, Ke
Wei, Xiao
Qiao, Guojun
author_facet Tian, Jie
Xu, Xin
Zhi, Qijun
Lu, Jiguang
Dang, Shijun
Yang, Ke
Wei, Xiao
Qiao, Guojun
contents A more realistic description of the magnetosphere is crucial for understanding the radiation emitted by pulsars. In this paper, we revisit the annular gap model by employing a rotating dipole field, which is more realistic than the static dipole field, as an approximation of the magnetic structure of the pulsar magnetosphere. Compared with the static dipole field approximation, the open field-line region, including both the core and annular gaps, is significantly enlarged, and the two regions become asymmetric with respect to the fiducial plane. We apply this model to three young gamma-ray pulsars with distinct light-curve morphologies, PSRs J0631$+$1036 (single peak), J1709$-$4429 (double peaks), and J1048$-$5832 (three peaks). Using viewing geometries constrained by radio polarization measurements, the annular gap model within the rotating dipole field successfully reproduces the main morphological features of their gamma-ray light curves above 0.1 GeV. Our model provides a framework for interpreting pulsar high-energy emission, which can be used to analyze the emission properties of high-energy pulsars.
format Preprint
id arxiv_https___arxiv_org_abs_2603_24046
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle The annular gap model under a rotating dipole field approximation: simulating gamma-ray light curve
Tian, Jie
Xu, Xin
Zhi, Qijun
Lu, Jiguang
Dang, Shijun
Yang, Ke
Wei, Xiao
Qiao, Guojun
High Energy Astrophysical Phenomena
A more realistic description of the magnetosphere is crucial for understanding the radiation emitted by pulsars. In this paper, we revisit the annular gap model by employing a rotating dipole field, which is more realistic than the static dipole field, as an approximation of the magnetic structure of the pulsar magnetosphere. Compared with the static dipole field approximation, the open field-line region, including both the core and annular gaps, is significantly enlarged, and the two regions become asymmetric with respect to the fiducial plane. We apply this model to three young gamma-ray pulsars with distinct light-curve morphologies, PSRs J0631$+$1036 (single peak), J1709$-$4429 (double peaks), and J1048$-$5832 (three peaks). Using viewing geometries constrained by radio polarization measurements, the annular gap model within the rotating dipole field successfully reproduces the main morphological features of their gamma-ray light curves above 0.1 GeV. Our model provides a framework for interpreting pulsar high-energy emission, which can be used to analyze the emission properties of high-energy pulsars.
title The annular gap model under a rotating dipole field approximation: simulating gamma-ray light curve
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2603.24046