Nonlinear QED effects in X-ray emission of pulsars
arXiv:1704.04750 · doi:10.1088/1475-7516/2017/10/014
Abstract
In the presence of strong magnetic fields near pulsars, the QED vacuum becomes a birefringent medium due to nonlinear QED interactions. Here, we explore the impact of the effective photon-photon interaction on the polarization evolution of photons propagating through the magnetized QED vacuum of a pulsar. We solve the quantum Boltzmann equation within the framework of the Euler-Heisenberg Lagrangian to find the evolution of the Stokes parameters. We find that linearly polarized X-ray photons propagating outward in the magnetosphere of a rotating neutron star can acquire high values for the circular polarization parameter. Meanwhile, it is shown that the polarization characteristics of photons besides photon energy depend strongly on parameters of the pulsars such as magnetic field strength, inclination angle and rotational period. Our results are clear predictions of QED vacuum polarization effects in the near vicinity of magnetic stars which can be tested with the upcoming X-ray polarimetric observations.
12 pages, 3 figures
References in corpus (11)
- Physics of Strongly Magnetized Neutron Stars
- Evidence for vacuum birefringence from the first optical polarimetry measurement of the isolated neutron star RX\, J1856.53754
- Atmosphere Models of Magnetized Neutron Stars: QED Effects, Radiation Spectra, and Polarization Signals
- Polarization of neutron star surface emission: a systematic analysis
- Polarized thermal emission from X-ray Dim Isolated Neutron Stars: the case of RX J1856.5-3754
- Generation of Circular Polarization of the Cosmic Microwave Background
- X-ray Polarimetry: a new window on the high energy sky
- Wave Modes in the Magnetospheres of Pulsars and Magnetars
- Photon-neutrino scattering and the B-mode spectrum of CMB photons
- Polarization of a probe laser beam due to nonlinear QED effects
- Using an intense laser beam in interaction with muon/electron beam to probe the Noncommutative QED
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- Long time behavior of nonlinear electromagnetic wave in vacuum beyond linear approximation
- Low-energy multi-photon scattering at tree-level and one-loop order in a homogeneous electromagnetic field
- Induced Circular Polarization on Photons Due to Interaction with Axion-Like Particles in Rotating Magnetic Field of Neutron Stars