Radiative Transfer in Obliquely Illuminated Accretion Disks
نویسنده
چکیده
The illumination of an accretion disk around a black hole or neutron star by the central compact object or the disk itself often determines its spectrum, stability, and dynamics. The transport of radiation within the disk is in general a multi-dimensional, non-axisymmetric problem, which is challenging to solve. Here, I present a method of decomposing the radiative transfer equation that describes absorption, emission, and Compton scattering in an obliquely illuminated disk into a set of four one-dimensional transfer equations. I show that the exact calculation of the ionization balance and radiation heating of the accretion disk requires the solution of only one of the one-dimensional equations, which can be solved using existing numerical methods. I present a variant of the Feautrier method for solving the full set of equations, which accounts for the fact that the scattering kernels in the individual transfer equations are not forward-backward symmetric. I then apply this method in calculating the albedo of a cold, geometrically thin accretion disk. Subject headings: accretion – radiative transfer – methods: numerical
منابع مشابه
Properties of Obliquely Illuminated Accretion Disks. I. Two-Dimensional Radiative Transfer
The illumination of an accretion disk around a black hole or neutron star by the central compact object or the disk itself often determines its spectrum, stability, and dynamics. The transport of radiation within the disk is in general a multi-dimensional, non-axisymmetric problem, which is challenging to solve. Here, I present a method of decomposing the two-dimensional radiative transfer equa...
متن کاملEddington Limit and Radiative Transfer in Highly Inhomogeneous Atmospheres
Radiation dominated accretion disks are likely to be subject to the “photon bubble” instability, which may lead to strong density inhomogeneities on scales much shorter than the disk scale height. Such disks – and magnetized, radiation-dominated atmospheres in general – could radiate well above the Eddington limit without being disrupted. When density contrasts become large over distances of or...
متن کاملSpectroscopic Signatures of Conduction-Mediated Transition Layers Above an X-ray Illuminated Disk
We derive a semi-analytic solution for the structure of conduction-mediated transition layers above an X-ray illuminated accretion disk, and calculate explicitly the X-ray line radiation resulting from both resonance line scattering and radiative recombination in these layers. The vertical thermal structure of the illuminated disk is found to depend on the illuminating continuum: for a hard pow...
متن کاملNarrow Moving Fe K Α Lines from Magnetic Flares in Agn
We point out that luminous magnetic flares, thought to occur in standard AGN accretion disks, cannot be located much higher than few pressure scale heights above the disk. Using this fact, we estimate the fraction of the disk surface illuminated by a typical flare. This fraction turns out to be very small for geometrically thin disks, which implies that the instantaneous Fe Kα emission line fro...
متن کاملNon-LTE Spectra of Accretion Disks Around Intermediate-Mass Black Holes
We have calculated the structures and the emergent spectra of stationary, geometrically thin accretion disks around 100 and 1000 M⊙ black holes in both the Schwarzschild and extreme Kerr metrics. Equations of radiative transfer, hydrostatic equilibrium, energy balance, ionization equilibrium, and statistical equilibrium are solved simultaneously and consistently. The six most astrophysically ab...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2002