Atmospheres of Magnetized Neutron Stars: Vacuum Polarization and Partially Ionized Models
arXiv:astro-ph/0212077 · doi:10.1016/j.asr.2003.02.016
Abstract
We construct hydrogen atmosphere models for magnetized neutron stars in radiative equilibrium with surface fields B=10^12-5x10^14 G and effective temperatures T_eff a few x 10^5-10^6 K by solving the full radiative transfer equations for both polarization modes in the magnetized hydrogen plasma. The atmospheres directly determine the characteristics of thermal emission from isolated neutron stars. We study the effects of vacuum polarization and bound atoms on the atmosphere structure and spectra. For the lower magnetic field models (B 10^12 G), the spectral features due to neutral atoms lie at extreme UV and very soft X-ray energies and therefore are not likely to be observed. However, the continuum flux is also different from the fully ionized case, especially at lower energies. For the higher magnetic field models, we find that vacuum polarization softens the high energy tail of the thermal spectrum. We show that this depression of continuum flux strongly suppresses not only the proton cyclotron line but also spectral features due to bound species; therefore spectral lines or features in thermal radiation are more difficult to observe when the neutron star magnetic field is > 10^14 G.
6 pages, 6 figures, submitted to Adv Sp Res: Proceedings of the 34th COSPAR Scientific Assembly, E1.4 "High Energy Studies of Supernova Remnants and Neutron Stars"
References in corpus (4)
- Transfer of Polarized Radiation in Strongly Magnetized Plasmas and Thermal Emission from Magnetars: Effect of Vacuum Polarization
- Atmospheres and Spectra of Strongly Magnetized Neutron Stars -- III. Partially Ionized Hydrogen Models
- Equation of state and opacities for hydrogen atmospheres of neutron stars with strong magnetic fields
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Cited by in corpus (4)
- Atmosphere Models of Magnetized Neutron Stars: QED Effects, Radiation Spectra, and Polarization Signals
- Electromagnetic polarization in partially ionized plasmas with strong magnetic fields and neutron star atmosphere models
- Diffusion Monte Carlo calculations for the ground states of atoms and ions in neutron star magnetic fields
- Partially ionized atmospheres of neutron stars with strong magnetic fields