Dynamics of Neutron Star Accretion Columns in Split-Monopole Magnetic Fields
arXiv:2210.06616 · doi:10.1093/mnras/stad063
Abstract
We perform 2D axisymmetric radiative relativistic MHD simulations of radiation pressure supported neutron star accretion columns in split-monopole magnetic fields. The accretion columns exhibit quasi-periodic oscillations, which manifest in the luminosity power spectrum as 2-10 kHz peaks, together with broader extensions to somewhat higher frequencies. The peak frequency decreases for wider columns or higher mass accretion rates. In contrast to the case of shorter columns in uniform magnetic fields, pdV work contributes substantially to maintaining the radiation pressure inside the column against sideways radiative cooling. This is in part due to the compression associated with accretion along the converging magnetic field lines towards the stellar surface. Propagating entropy waves which are associated with the slow-diffusion photon bubble instability form in all our simulations. Radial advection of radiation from the oscillation itself as well as the entropy waves is also important in maintaining radiation pressure inside the column. The time-averaged profile of our fiducial simulation accretion is approximately consistent with the classical 1D stationary model provided one incorporates the correct column shape. We also quantify the porosity in all our accretion column simulations so that this may also in principle be used to improve 1D models.
18 pages, 17 figures, and 3 table, accepted by MNRAS
References in corpus (9)
- The Athena++ Adaptive Mesh Refinement Framework: Design and Magnetohydrodynamic Solvers
- An Implicit Finite Volume Scheme to Solve the Time Dependent Radiation Transport Equation Based on Discrete Ordinates
- Pulsating ULXs: large pulsed fraction excludes strong beaming
- A New Two-Fluid Radiation-Hydrodynamical Model for X-ray Pulsar Accretion Columns
- Dynamical and Radiative Properties of X-ray Pulsar Accretion Columns: Phase-Averaged Spectra
- Radiative Relativistic Magnetohydrodynamic Simulations of Neutron Star Column Accretion in Cartesian Geometry
- Beamed emission from a neutron-star ULX in a GRRMHD simulation
- Covariant Radiative Transfer for Black Hole Spacetimes
- Radiative MHD Simulations of Photon Bubbles in Radiation-Supported Magnetized Atmospheres of Neutron Stars with Isotropic Thomson Scattering
Cited by in corpus (5)
- Dynamical Effects of Magnetic Opacity in Neutron Star Accretion Columns
- Simulating the shock dynamics of a neutron star accretion column
- GR-RMHD Simulations of Super-Eddington Accretion Flows onto a Neutron Star with Dipole and Quadrupole Magnetic Fields
- Cyclotron lines in subcritical X-ray pulsars: Monte Carlo simulations reveal the origin of the observed variability
- Surface gravity wave on a neutron star ocean trapped around a magnetic pole