Analytical Hot Spot Shapes and Magnetospheric Radius from 3D Simulations of Magnetospheric Accretion
arXiv:1303.4681 · doi:10.1093/mnras/stt945
Abstract
We present an analytical formula for the position and shape of the spots on the surface of accreting magnetized stars in cases where a star has a dipole magnetic field tilted at a small misalignment angle Theta < 30 degrees about the rotational axis, and the magnetosphere is 2.5-5 times the radius of the star. We observed that the azimuthal position of the spots varies significantly when the position of the inner disc varies. In contrast, the polar position of the spots varies only slightly because of the compression of the magnetosphere. The azimuthal width of the spots strongly varies with Theta: spots have the shape of an arc at larger misalignment angles, and resemble a ring at very small misalignment angles. The polar width of the spots varies only slightly with changes in parameters. The motion of the spots in the azimuthal direction can provide phase-shifts in accreting millisecond pulsars, and the "drift" of the period in Classical T Tauri stars. The position and shape of the spots are determined by three parameters: misalignment angle Theta; normalized corotation radius, r_c/R_* and normalized magnetospheric radius, r_m/R_*, where R_* is the stellar radius. We also use our data to check the formula for the Alfvén radius, where the main dependencies are r_m \sim (μ^2/\dot M)^{2/7}, where μis the magnetic moment of the star, and \dot M is the accretion rate. We found that the dependence is more gradual, r_m \sim (μ^2/\dot M)^{1/5}, which can be explained by the compression of the magnetosphere by the disc matter and by the non-dipole shape of the magnetic field lines of the external magnetosphere.
13 pages, 12 figures, Submitted to MNRAS
References in corpus (9)
- MHD simulations of accretion onto a dipolar magnetosphere. II. Magnetospheric ejections and stellar spin-down
- Magnetospheric accretion on the T Tauri star BP Tauri
- Accretion to Magnetized Stars through the Rayleigh-Taylor Instability: Global Three-Dimensional Simulations
- Accretion funnels onto weakly magnetized young stars
- A model for the waveform behavior of accreting millisecond pulsars: Nearly aligned magnetic fields and moving emission regions
- Three-dimensional Simulations of Accretion to Stars with Complex Magnetic Fields
- Photometric variability of the T Tauri star TW Hya on time scales of hours to years
- Timing of the Accreting Millisecond Pulsar XTE J1814-338
- Spin up and phase fluctuations in the timing of the accreting millisecond pulsar XTE J1807-294
Cited by in corpus (59)
- Cyclotron lines in highly magnetized neutron stars
- Torque Enhancement, Spin Equilibrium, and Jet Power from Disk-Induced Opening of Pulsar Magnetic Fields
- Boundary between Stable and Unstable Regimes of Accretion. Ordered and Chaotic Unstable Regimes
- Accretion, Outflows, and Winds of Magnetized Stars
- The magnetic field strengths of accreting millisecond pulsars
- Transitional millisecond pulsars
- Dippers and Dusty Disks Edges: A Unified Model
- Propeller outflows from an MRI disc
- Super-Eddington accretion discs with advection and outflows around magnetized neutron stars
- Super-Eddington accretion onto a magnetized neutron star
- Accretion variability of Herbig Ae/Be stars observed by X-Shooter. HD 31648 and HD 163296
- Three-dimensional Simulations of Magnetospheric Accretion in a T Tauri Star: Accretion and Wind Structures Just Around Star
- GK Per and EX Hya: Intermediate polars with small magnetospheres
- Magnetic torques on T Tauri stars: accreting vs. non-accreting systems
- Accreting protoplanets: Spectral signatures and magnitude of gas and dust extinction at H alpha
- Magnetic braking of accreting T Tauri stars: Effects of mass accretion rate, rotation, and dipolar field strength
- Measuring the Density Structure of an Accretion Hot Spot
- Insight-HXMT observations of Swift J0243.6+6124 during its 2017-2018 outburst
- A New Two-Fluid Radiation-Hydrodynamical Model for X-ray Pulsar Accretion Columns
- Timing the pulsations of the accreting millisecond pulsar SAX J1808.4-3658 during its 2019 outburst
- The discovery of the 528.6 Hz accreting millisecond X-ray pulsar MAXI J1816-195
- Super-Strong Magnetic Fields of Neutron Stars in Be X-Ray Binaries Estimated with New Torque and Magnetosphere Models
- Evidence for the radiation-pressure dominated accretion disk in bursting pulsar GRO J1744-28 using timing analysis
- Formation of Mass-gap Black Holes from Neutron Star X-ray Binaries with Super-Eddington Accretion
- A Census of the Low Accretors. II: Accretion Properties
- Stable and unstable accretion in the classical T Tauri stars IM Lup and RU Lup as observed by MOST
- Insights into the inner regions of the FU Orionis disc
- Study of the accretion torque during the 2014 outburst of the X-ray pulsar GRO J1744-28
- Timing analysis of the 2022 outburst of the accreting millisecond X-ray pulsar SAX J1808.43658: hints of an orbital shrinking
- Radius of the neutron star magnetosphere during disk accretion
- Simulating the shock dynamics of a neutron star accretion column
- Constraining the Coronal Heights and Readjustment Velocities Based on the Detection of a Few Hundred Seconds Delays in the Z Source GX 17+2
- Constraints to the magnetospheric properties of T Tauri stars. I. The C II], Fe II] and Si II] ultraviolet features
- MHD Simulations of Magnetospheric Accretion, Ejection and Plasma-field Interaction
- On the curious pulsation properties of the accreting millisecond pulsar IGR J17379-3747
- An Estimation of the White Dwarf Mass in the Dwarf Nova GK Persei with NuSTAR Observations of Two States
- The Magneto Hydro Dynamical Model of KHz Quasi Periodic Oscillations in Neutron Star Low Mass X-ray Binaries (II)
- Discovery of pulsation dropout and turn-on during the high state of the accreting X-ray pulsar LMC X-4
- Constraints to the magnetospheric properties of T Tauri stars - II. The Mg II ultraviolet feature
- Modelling spin-up episodes in accreting millisecond X-ray pulsars
- GRMHD simulations of accreting neutron stars I: nonrotating dipoles
- Modeling of CoRoT and Spitzer lightcurves in NGC 2264 caused by an optically thick warp
- Magnetar central engines in gamma-ray busts follow the universal relation of accreting magnetic stars
- On the Magnetic Fields of Ultraluminous X-ray Pulsars
- Magnetic Inclination Evolution of Accreting Neutron Stars in Intermediate/Low-Mass X-ray Binaries
- Effects of scattering in the accretion funnel on the pulse profiles of accreting millisecond pulsars
- Physical modeling of viscous disc evolution around magnetized neutron star. Aql X-1 2013 outburst decay
- Constraints on the disc-magnetosphere interaction in accreting pulsar 4U 1626--67
- Finite size effects on the light curves of slowly-rotating neutron stars
- Accretion disk coronae of Intermediate Polar Cataclysmic Variables - 3D MagnetoHydro-Dynamic modeling and thermal X-ray emission
- X-ray spectral properties of the accreting millisecond pulsar IGR J17498-2921 during its 2023 outburst
- Light curve variation caused by accretion column switching stellar hemispheres
- A possible explanation of the parallel tracks in kilohertz quasi-periodic oscillations from low-mass-X-ray binaries
- Updated Spin and Orbital Parameters and Energy Dependent Pulse Behaviors of the Accreting Millisecond X-ray Pulsar IGR J175912342
- Parameter constraints for accreting millisecond pulsars with synthetic NICER data
- On the source of the Fe K-alpha emission in T Tauri Stars. Radiation induced by relativistic electrons during flares. An application to RY Tau
- Pulse profile modelling of the accretion-powered millisecond pulsar SAX J1808.4-3658 using NICER data from its 2019 and 2022 outbursts
- On the torque exerted by a warped, magnetically threaded accretion disk
- Constraints on the magnetic field structure in accreting compact objects from aperiodic variability