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Related papers: Slow modes in Keplerian disks

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We study the linear perturbations of collisionless near-Keplerian discs. Such systems are models for debris discs around stars and the stellar discs surrounding supermassive black holes at the centres of galaxies. Using a finite-element…

Earth and Planetary Astrophysics · Physics 2015-05-30 Mir Abbas Jalali , Scott Tremaine

We present the simplest model that permits a largely analytical exploration of the m=1 counter-rotating instability in a "hot" nearly Keplerian disc of collisionless self-gravitating matter. The model consists of a two-component softened…

Astrophysics of Galaxies · Physics 2015-05-14 S. Sridhar , Tarun Deep Saini

Accretion disks around stars, or other central massive bodies, can support long-lived, slowly precessing $m=1$ disturbances in which the fluid motion is nearly Keplerian with non-zero eccentricity. We study such `slow modes' in disks that…

Earth and Planetary Astrophysics · Physics 2019-03-06 Wing-Kit Lee , Adam M. Dempsey , Yoram Lithwick

Thin accretion discs around massive compact objects can support slow pressure modes of oscillations in the linear regime that have azimuthal wavenumber $m=1$. We consider finite, flat discs composed of barotropic fluid for various surface…

Astrophysics of Galaxies · Physics 2009-11-23 Tarun Deep Saini , Mamta Gulati , S. Sridhar

It is shown that pure exponential discs in spiral galaxies are capable of supporting slowly varying discrete global lopsided modes, which can explain the observed features of lopsidedness in the stellar discs. Using linearized fluid…

Astrophysics · Physics 2009-11-13 K. Saha , F. Combes , C. Jog

We extend our investigation of the normal modes of small adiabatic oscillations of relativistic barotropic thin accretion disks to the inertial-pressure (p) modes. We focus here on the lowest frequency fundamental p-modes, those with no…

Astrophysics · Physics 2011-02-11 Manuel Ortega-Rodriguez , Alexander S. Silbergleit , Robert V. Wagoner

This paper studies the hydrodynamical problem of normal modes of small adiabatic oscillations of relativistic barotropic thin accretion disks around black holes (and compact weakly magnetic neutron stars). Employing WKB techniques, we…

Astrophysics · Physics 2008-11-26 Manuel Ortega-Rodriguez , Alexander S. Silbergleit , Robert V. Wagoner

We present a modal analysis of instabilities of counter-rotating, self-gravitating collisionless stellar discs, using the recently introduced modified WKB formulation of spiral density waves for collisionless systems (Gulati \& Saini). The…

Astrophysics of Galaxies · Physics 2017-01-11 Mamta Gulati , Tarun Deep Saini

We study the linear $m=1$ counter-rotating instability in a two-component, nearly Keplerian disc. Our goal is to understand these \emph{slow} modes in discs orbiting massive black holes in galactic nuclei. They are of interest not only…

Astrophysics of Galaxies · Physics 2015-06-04 Mamta Gulati , Tarun Deep Saini , S. Sridhar

The short--wave asymptotics (WKB) of spiral density waves in self-gravitating stellar discs is well suited for the study of the dynamics of tightly--wound wavepackets. But the textbook WKB theory is not well adapted to the study of the…

Astrophysics of Galaxies · Physics 2016-05-04 Mamta Gulati , Tarun Deep Saini

A continuous system such as a galactic disc is shown to be well approximated by an N-ring differentially rotating self-gravitating system. Lowest order (m=1) non-axisymmetric features such as lopsidedness and warps are global in nature and…

Astrophysics · Physics 2009-11-13 Kanak Saha

When thin accretion disks around black holes are perturbed, the main restoring force is gravity. If gas pressure, magnetic stresses, and radiation pressure are neglected, the disk remains thin as long as orbits do not intersect.…

Astrophysics · Physics 2009-06-23 Svetlin Tassev , Edmund Bertschinger

The arguments in favor of the unified formation mechanism for both slow (Lynden-Bell's) bars and common fast bars are given. This mechanism consists in a certain instability that is akin to the well-known radial orbit instability; it is…

Astrophysics · Physics 2007-05-23 E. V. Polyachenko , V. L. Polyachenko

We first briefly review how we investigate the modes of oscillation trapped within the inner region of accretion disks by the strong-field gravitational properties of a black hole (or a compact, weakly-magnetized neutron star). Then we…

Astrophysics · Physics 2016-08-30 Alexander S. Silbergleit , Robert V. Wagoner , Manuel Ortega-Rodriguez

This work derives the linearized equations of motion, the Lagrangian density, the Hamiltonian density, and the canonical angular momentum density for general perturbations [$\propto \exp(im\phi)$ with $m=0,\pm 1,..$] of a geometrically thin…

Astrophysics · Physics 2009-11-11 L. Zhang , R. V. E. Lovelace

Lopsidedness is common in spiral galaxies. Often, there is no obvious external cause, such as an interaction with a nearby galaxy, for such features. Alternatively, the lopsidedness may have an internal cause, such as a dynamical…

Astrophysics · Physics 2009-11-13 Vanessa Dury , S. De Rijcke , Victor P. Debattista , H. Dejonghe

We investigate accreting disk systems with polytropic gas in Keplerian motion. Numerical data and partial analytic results show that the self-gravitation of the disk speeds up its rotation -- its rotational frequency is larger than that…

Cosmology and Nongalactic Astrophysics · Physics 2012-11-26 E. Malec , P. Mach , M. Pirog

We compare our calculations of the frequencies of the fundamental g, c, and p--modes of relativistic thin accretion disks with recent observations of high frequency QPOs in X-ray binaries with black hole candidates. These classes of modes…

Astrophysics · Physics 2009-11-06 Robert V. Wagoner , Alexander S. Silbergleit , Manuel Ortega-Rodriguez

We study spherical and disk clusters in a near-Keplerian potential of galactic centers or massive black holes. In such a potential orbit precession is commonly retrograde, i.e. direction of the orbit precession is opposite to the orbital…

Astrophysics · Physics 2008-11-26 E. V. Polyachenko , V. L. Polyachenko , I. G. Shukhman

I utilize the Petrov-Galerkin formulation and develop a new method for solving the unsteady collisionless Boltzmann equation in both the linear and nonlinear regimes. In the first order approximation, the method reduces to a linear…

Astrophysics · Physics 2009-11-13 Mir Abbas Jalali
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