Radiative Transfer Along Rays in Curved Spacetimes
arXiv:astro-ph/0511515 · doi:10.1111/j.1745-3933.2005.00120.x
Abstract
Radiative transfer in curved spacetimes has become increasingly important to understanding high-energy astrophysical phenomena and testing general relativity in the strong field limit. The equations of radiative transfer are physically equivalent to the Boltzmann equation, where the latter has the virtue of being covariant. We show that by a judicious choice of the basis of the phase space, it is generally possible to make the momentum derivatives in the Boltzmann equation vanish along an arbitrary (including nongeodesic) path, thus reducing the problem of radiative transfer along a ray to a path integral in coordinate space.
To be published in MNRAS Letters
References in corpus (1)
Cited by in corpus (22)
- Testing the No-Hair Theorem with Event Horizon Telescope Observations of Sagittarius A*
- A Fast New Public Code for Computing Photon Orbits in a Kerr Spacetime
- Evidence for Low Black Hole Spin and Physically Motivated Accretion Models from Millimeter VLBI Observations of Sagittarius A*
- Methods for detecting flaring structures in Sagittarius A* with high frequency VLBI
- The size of the jet launching region in M87
- Estimating the Parameters of Sgr A*'s Accretion Flow Via Millimeter VLBI
- Millimeter Flares and VLBI Visibilities from Relativistic Simulations of Magnetized Accretion onto the Galactic Center Black Hole
- A Ray-Tracing Algorithm for Spinning Compact Object Spacetimes with Arbitrary Quadrupole Moments. I. Quasi-Kerr Black Holes
- GRay: a Massively Parallel GPU-Based Code for Ray Tracing in Relativistic Spacetimes
- Modeling Seven Years of Event Horizon Telescope Observations with Radiatively Inefficient Accretion Flow Models
- Parsec-scale Faraday Rotation Measures from General Relativistic MHD Simulations of Active Galactic Nuclei Jets
- RAPTOR I: Time-dependent radiative transfer in arbitrary spacetimes
- Observational Signatures of Tilted Black Hole Accretion Disks from Simulations
- Constraining the Structure of Sagittarius A*'s Accretion Flow with Millimeter-VLBI Closure Phases
- Self-consistent spectra from radiative GRMHD simulations of accretion onto Sgr A*
- RAPTOR II: Polarized radiative transfer in curved spacetime
- Unique probe of dark matter in the core of M87 with the Event Horizon Telescope
- Observing supermassive black holes in virtual reality
- Visibility of Black Hole Shadows in Low-luminosity AGN
- Bow Ties in the Sky I: The Angular Structure of Inverse Compton Gamma-ray Halos in the Fermi Sky
- Algorithms And Programs For Strong Gravitational Lensing In Kerr Space-time Including Polarization
- Steps for Solving the Transfer Equation for Arbitrary Flows in Stationary Spacetimes