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Strong-field QED effects on polarization states in dipole and quadrudipole pulsar emissions

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arxiv 2406.05752 v3 pith:T3PM5GQ4 submitted 2024-06-09 astro-ph.HE gr-qc

Strong-field QED effects on polarization states in dipole and quadrudipole pulsar emissions

classification astro-ph.HE gr-qc
keywords vectoreffectsemissionevolutionpulsarquantumstokesbirefringent
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Highly magnetized neutron stars have quantum refraction effects on pulsar emission due to the non-linearity of the quantum electrodynamics (QED) action. In this paper, we investigate the evolution of the polarization states of pulsar emission under the quantum refraction effects, combined with the dependence on the emission frequency; we solve a system of evolution equations of the Stokes vector, where the birefringent vector, in which such effects are encoded, acts on the Stokes vector. At a fixed frequency of emission, depending on the magnitude of the birefringent vector, dominated mostly by the magnetic field strength, the evolution of the Stokes vector largely exhibits three different patterns: (i) monotonic, or (ii) half-oscillatory, or (iii) highly oscillatory behaviors. These features are understood and confirmed by means of approximate analytical solutions to the evolution equations.

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