Atmosphere Models of Magnetized Neutron Stars: QED Effects, Radiation Spectra, and Polarization Signals
arXiv:astro-ph/0607168 · doi:10.1111/j.1365-2966.2006.11098.x
Abstract
Theoretical modeling of surface emission from magnetized neutron stars (NSs) requires proper treatment of QED effects, in particular the effect of photon mode conversion due to the ``vacuum resonance'' between plasma and vacuum polarization. Previous NS atmosphere models incorporated this effect approximately, using transfer equations for the photon modes which are inadequate near the vacuum resonance, particularly for field strengths around G, where the vacuum resonance occurs near the photosphere. In this paper, we provide an accurate treatment of the QED-induced mode conversion effect in NS atmosphere models, employing both the modal radiative transfer equations, coupled with an accurate mode conversion probability at the resonance, and the full evolution equations for the photon Stokes parameters. In doing so, we are able to quantitatively calculate the effects of vacuum polarization on the atmosphere emission spectra, beam patterns, and polarizations for the entire range of field strengths, G. We find that for NSs with $B\ga 2 B_l$, vacuum polarization reduces the widths of spectral features, and softens the hard spectral tail typical of magnetized atmosphere models. For $B\la B_l/2$, vacuum polarization does not change the emission spectra, but can significantly affect the polarization signals. We show that vacuum polarization induces a unique energy-dependent linear polarization signature, and that circular polarization can be generated in the magnetospheres of rapidly rotating NSs. We discuss the implications of our results for recent observations of thermally emitting isolated NSs and magnetars, as well as the prospects for future spectral and polarization observations.
31 pages, 23 figures, 1 table; MNRAS accepted; Minor corrections
References in corpus (2)
Cited by in corpus (47)
- Evidence for vacuum birefringence from the first optical polarimetry measurement of the isolated neutron star RX\, J1856.53754
- X-ray spectra from magnetar candidates. I. Monte Carlo simulations in the non-relativistic regime
- Resonant cyclotron scattering in magnetars' emission
- Isolated neutron stars: Magnetic fields, distances, and spectra
- Model X-ray Spectra of Magnetic Neutron Stars with Hydrogen Atmospheres
- Modelling mid-Z element atmospheres for strongly-magnetized neutron stars
- Determination of X-ray pulsar geometry with IXPE polarimetry
- Strong-Field Physics in QED and QCD: From Fundamentals to Applications
- Constraints on the Emission and Viewing Geometry of the Transient Anomalous X-ray Pulsar XTE J1810-197
- Very deep X-ray observations of the Anomalous X-ray Pulsar 4U 0142+614
- Heat blanketing envelopes and thermal radiation of strongly magnetized neutron stars
- Sleeping beasts: strong toroidal magnetic field in quiescent magnetars explains their large pulsed fraction
- X-ray spectra and polarization from magnetar candidates
- Modeling the X-rays from the Central Compact Object PSR J1852+0040 in Kesteven 79: Evidence for a Strongly Magnetized Neutron Star
- Simultaneous X-ray and radio observations of the radio-mode switching pulsar PSR B1822-09
- Models of magnetized neutron star atmospheres: thin atmospheres and partially ionized hydrogen atmospheres with vacuum polarization
- IXPE Detection of Polarized X-rays from Magnetars and Photon Mode Conversion at QED Vacuum Resonance
- Spectral features in isolated neutron stars induced by inhomogeneous surface temperatures
- Pulse Peak Migration during the Outburst Decay of the Magnetar SGR 1830-0645: Crustal Motion and Magnetospheric Untwisting
- POLARIX: a pathfinder mission of X-ray polarimetry
- 3D Magneto-thermal Simulations of Tangled Crustal Magnetic Field in Central Compact Objects
- XMM-Newton observation of the nearby pulsar B1133+16
- Probing magnetar emission mechanisms with spectropolarimetry
- Radiative properties of highly magnetized isolated neutron star surfaces and approximate treatment of absorption features in their spectra
- Statistical equilibrium and ion cyclotron absorption/emission in strongly magnetized plasmas
- Atmospheric Structure and Radiation Pattern for Neutron-Star Polar Caps Heated by Magnetospheric Return Currents
- Wave Modes in the Magnetospheres of Pulsars and Magnetars
- A systematic study of soft X-ray pulse profiles of magnetars in quiescence
- Polarized Radiation Transfer in Neutron Star Surface Layers
- Thermal emission and magnetic beaming in the radio and X-ray mode-switching PSR B0943+10
- Precession of magnetars: dynamical evolutions and modulations on polarized electromagnetic waves
- Intensity and Polarization Characteristics of Extended Neutron Star Surface Regions
- Vacuum polarization alters the spectra of accreting X-ray pulsars
- X-ray Polarisation in Magnetar Atmospheres -- Effects of Mode Conversion
- Photon-axion mixing in thermal emission of isolated neutron stars
- Systematic Analysis of the Effects of Mode Conversion on Thermal Radiation from Neutron Stars
- Revealing two orthogonally polarized spectral components in Vela X-1 with IXPE
- Accurate analytical modeling of light rays in spherically symmetric spacetimes: Applications in the study of black hole accretion disks and polarimetry
- Mean opacities of a strongly magnetized high temperature plasma
- Fitting XMM-Newton Observations of the AXP 1RXS J170849.0-400910 with four magnetar surface emission models, and predictions for X-ray polarization observations with IXPE
- Vacuum birefringence and the polarized X-ray emission from a radio magnetar
- Monte Carlo Simulations of Polarized Radiative Transfer in Neutron Star Atmospheres
- Towards constraining axions with polarimetric observations of the isolated neutron star RX J1856.5-3754
- Pulsed, Polarized X-ray Emission from Neutron Star Surfaces: the Effects of Vacuum Birefringence in the Magnetosphere
- Statistical features of multiple Compton scattering in a strong magnetic field
- Fast and accurate analytical formulas for light propagation in general static, spherically symmetric spacetimes
- Astroparticle physics with compact objects