Detailed Information on Publication Record
2018
Influence of toroidal magnetic field in multiaccreting tori
PUGLIESE, Daniela and Giovanni MONTANIBasic information
Original name
Influence of toroidal magnetic field in multiaccreting tori
Authors
PUGLIESE, Daniela (380 Italy, guarantor, belonging to the institution) and Giovanni MONTANI (380 Italy)
Edition
Monthly Notices of the Royal Astronomical Society, 2018, 0035-8711
Other information
Language
English
Type of outcome
Článek v odborném periodiku
Field of Study
10308 Astronomy
Country of publisher
United Kingdom of Great Britain and Northern Ireland
Confidentiality degree
není předmětem státního či obchodního tajemství
References:
RIV identification code
RIV/47813059:19240/18:A0000262
Organization unit
Faculty of Philosophy and Science in Opava
UT WoS
000432659800004
Keywords in English
accretion: accretion discs; black hole physics; MHD
Tags
International impact, Reviewed
Links
GJ16-03564Y, research and development project.
Změněno: 4/4/2019 07:50, RNDr. Jan Hladík, Ph.D.
Abstract
V originále
We analysed the effects of a toroidal magnetic field in the formation of several magnetized accretion tori, dubbed as ringed accretion discs (RADs), orbiting around one central Kerr supermassive black hole (SMBH) in active galactic nuclei (AGNs), where both corotating and counterotating discs are considered. Constraints on tori formation and emergence of RADs instabilities, accretion on to the central attractor and tori collision emergence, are investigated. The results of this analysis show that the role of the central BH spin-mass ratio, the magnetic field and the relative fluid rotation and tori rotation with respect the central BH, are crucial elements in determining the accretion tori features, providing ultimately evidence of a strict correlation between SMBH spin, fluid rotation, and magnetic fields in RADs formation and evolution. More specifically, we proved that magnetic field and discs rotation are in fact strongly constrained, as tori formation and evolution in RADs depend on the toroidal magnetic fields parameters. Eventually, this analysis identifies specific classes of tori, for restrict ranges of magnetic field parameter, that can be observed around some specific SMBHs identified by their dimensionless spin.