Astrophysical Disks

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Beschreibung

This book deals with collective and stochastic processes in astrophysical disks involving theory, observations, and the results of modelling. It examines the spiral-vortex structure in galactic and accretion disks, and stochastic and ordered structures in developed turbulence. The book advances the study in this important branch of astrophysics and will benefit professional researchers, lecturers, and graduate students.



Autorentext

Alexei M. Fridman world recognized scientist in the field of astrophysics, plasma physics, and non-linear dynamics, full member of the Russian Academy of Sciences, Department Head in the Institute for Astronomy, author of 219 publications in referred journals and 6 monographs.

Mikhail Ya. Marov world recognized scientist in the field of planetary physics, hydromechanics, and rarefied gas dynamics, corresponding member of the Russian Academy of Sciences, Department Head in the Keldysh Institute of Applied Mathematics, author of 212 publications in referred journals and 11 monographs.

Il'ya G. Kovalenko - a specialist in the field of astrophysics and computational plasma and hydrodynamics, Professor of the Theoretical Physics Department in the Volgograd State University, author of numerous publications in referred journals.



Klappentext

The book deals with collective and stochastic processes in astrophysical discs involving theory, observations, and the results of modelling. Among others, it examines the spiral-vortex structure in galactic and accretion disks , stochastic and ordered structures in the developed turbulence. It also describes sources of turbulence in the accretion disks, internal structure of disk in the vicinity of a black hole, numerical modelling of Be envelopes in binaries, gaseous disks in spiral galaxies with shock waves formation, observation of accretion disks in a binary system and mass distribution of luminous matter in disk galaxies.

The editors adaptly brought together collective and stochastic phenomena in the modern field of astrophysical discs, their formation, structure, and evolution involving the methodology to deal with, the results of observation and modelling, thereby advancing the study in this important branch of astrophysics and benefiting Professional Researchers, Lecturers, and Graduate Students.



Inhalt
Invited Papers.- The Over-Reflection Instability: Myth or Reality?.- Chaotic and Ordered Structures in the Developed Turbulence.- Internal Structure of Thin Accretion Disks.- Disc Formation in Binary be Stars.- Accretion Disks Around Black Holes with Account of Magnetic Fields.- Supercritical Accretion Disk in SS433.- Galactic Vortices.- Spiral Perturbations in Disk Galaxies Observed in NIR.- The Role of Ordered and Chaotic Motion in N-Body Models of Elliptical Galaxies Models.- Oral Contributions.- Gamma-Ray Burst Interaction with Dense Interstellar Medium.- Morphology of the Interaction between the Stream and Cool Accretion Disc in Semidetached Binaries.- Computer Modeling of Non-Stationary Gas Quasi-Keplerian Disk.- 3D Structure of Gaseous Disks in Spiral Galaxies.- Hydrodynamical Turbulence in Accretion Discs.- 2D-Simulations of Subcritical and Supercritical Accretion Disks Around Black Holes.- Separate Circumnuclear Stellar and Gaseous Disks in Disk Galaxies.- Bending Instability Galaxies: The Stellar Disk Thickness and the Mass of Spheroidal Component.- Disk-to-halo Mass Ratio Evaluations Based on the Numerical Models of Collisionless Disks.- Posters.- Global Irregularities of Spiral Patterns in Galaxies: Manifestation of hydrodynamic Instabilities?.- The Morphology of Gaseous Flows in Z and in the Active State.- Self-Consistent Gas and Stellar Dynamics of Disk Galaxies: A Problem of Dark Mass.- Numerical Simulation of Expanding Shock Waves in the Young Stars Objects.

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Produktinformationen

Titel
Astrophysical Disks
Untertitel
Collective and Stochastic Phenomena
Editor
EAN
9781402043482
ISBN
978-1-4020-4348-2
Format
E-Book (pdf)
Hersteller
Springer Netherlands
Herausgeber
Springer
Genre
Physik, Astronomie
Veröffentlichung
25.07.2006
Digitaler Kopierschutz
Wasserzeichen
Dateigrösse
23.02 MB
Anzahl Seiten
358
Jahr
2006
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