Conical accretion disc models using the Milne problem predict reduced polarization and opposite position angles from ring segments, providing a geometric account for spectral line wing polarization in Seyfert galaxies.
Compact Objects and Accretion Disks
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
Recent developments in the spectropolarimetric study of compact objects, specifically black holes (stellar and massive) and neutron stars are reviewed. The lectures are organized around five topics: disks, jets, outflows, neutron stars and black holes. They emphasize physical mechanisms and are intended to bridge the gap between the fundamentals of polarimetry and the phenomenology of observed cosmic sources of polarized radiation, as covered by the other lecturers. There has been considerable recent progress in spectropolarimetry from radio through optical frequencies and this is producing some unique diagnostics of the physical conditions around compact objects. It is argued that there is a great need to develop a correspondingly sensitive polarimetric capability at ultraviolet through gamma-ray energies.
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astro-ph.SR 1years
2019 1verdicts
UNVERDICTED 1representative citing papers
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Radiation intensity and polarization from accretion discs with progressive increasing height
Conical accretion disc models using the Milne problem predict reduced polarization and opposite position angles from ring segments, providing a geometric account for spectral line wing polarization in Seyfert galaxies.