Quantum refraction effects in pulsar emission

Author:

Kim Dong-Hoon12ORCID,Kim Chul Min3,Kim Sang Pyo45

Affiliation:

1. The Research Institute of Basic Science, Seoul National University , Seoul 08826 , Republic of Korea

2. Department of Physics and Astronomy, Seoul National University , Seoul 08826 , Republic of Korea

3. Advanced Photonics Research Institute, Gwangju Institute of Science and Technology , Gwangju 61005 , Republic of Korea

4. Department of Physics, Kunsan National University , Gunsan 54150 , Republic of Korea

5. Asia Pacific Center for Theoretical Physics , Pohang 37673 , Republic of Korea

Abstract

ABSTRACT Highly magnetized neutron stars exhibit the vacuum non-linear electrodynamics effects, which can be well-described using the one-loop effective action for quantum electrodynamics. In this context, we study the propagation and polarization of pulsar radiation, based on the post-Maxwellian Lagrangian from the Heisenberg–Euler–Schwinger action. Given the refractive index obtained from this Lagrangian, we determine the leading-order corrections to both the propagation and polarization vectors due to quantum refraction via perturbation analysis. In addition, the effects on the orthogonality between the propagation and polarization vectors and the Faraday rotation angle, all due to quantum refraction are investigated. Furthermore, from the dual refractive index and the associated polarization modes, we discuss quantum birefringence, with the optical phenomenology analogous to its classical counterpart.

Funder

National Research Foundation of Korea

Institute for Basic Science

GIST

GRI

Publisher

Oxford University Press (OUP)

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