Internal resonance in non-linear disk oscillations and the amplitude evolution of neutron star kilohertz QPOs
arXiv:0901.3076 · doi:10.1051/0004-6361/200810740
Abstract
We explore some properties of twin kilohertz quasiperiodic oscillations (QPOs) in a simple toy-model consisting of two oscillation modes coupled by a general nonlinear force. We examine resonant effects by slowly varying the values of the tunable, and nearly commensurable, eigenfrequencies. The behavior of the actual oscillation frequencies and amplitudes during a slow transition through the 3:2 resonance is examined in detail and it is shown that both are significantly affected by the nonlinearities in the governing equations. In particular, the amplitudes of oscillations reflect a resonant exchange of energy between the modes, as a result the initially weaker mode may become dominant after the transition. We note that a qualitatively similar behavior has been recently reported in several neutron star sources by Torok (2008, arXiv:0812.4751), who found that the difference of amplitudes in neutron star twin peak QPOs changes sign as the observed frequency ratio of the QPOs passes through the value 3:2.
6 pages, 5 figures, accepted by A&A
References in corpus (9)
- Oscillation modes of relativistic slender tori
- Accretion-Ejection Instability, MHD Rossby Wave Instability, diskoseismology, and the high-frequency QPO of microquasars
- Resonant Excitation of Disk Oscillations in Deformed Disks II: A Model of High Frequency QPOs
- Dynamics of magnetized relativistic tori oscillating around black holes
- Epicyclic Oscillations of Fluid Bodies: Newtonian Nonslender Torus
- Quasi-Periodic Oscillations from Magnetorotational Turbulence
- Excitation of Low-Frequency QPOs in Black Hole Accretion Flows
- Weak nonlinear coupling between epicyclic modes in slender tori
- Twin-peak quasiperiodic oscillations as an internal resonance
Cited by in corpus (21)
- Foundations of Black Hole Accretion Disk Theory
- Rotating Stars in Relativity
- Multi-resonance orbital model of high-frequency quasi-periodic oscillations: possible high-precision determination of black hole and neutron star spin
- Confronting the models of 3:2 quasiperiodic oscillations with the rapid spin of the microquasar GRS 1915+105
- On mass-constraints implied by the relativistic precession model of twin-peak quasi-periodic oscillations in Circinus X-1
- Resonant radii of kHz quasi-periodic oscillations in Keplerian discs orbiting neutron stars
- Mass of intermediate black hole in the source M82 X-1 restricted by models of twin high-frequency quasi-periodic oscillations
- On the distribution of frequency ratios of kHz QPOs
- Models of high-frequency quasi-periodic oscillations and black hole spin estimates in Galactic microquasars
- Mass-angular-momentum relations implied by models of twin peak quasi-periodic oscillations
- Power density spectra of modes of orbital motion in strongly curved spacetime: obtaining the observable signal
- Disc-oscillation resonance and neutron star QPOs: 3:2 epicyclic orbital model
- Two Transient Quasi-periodic Oscillations in -Ray Emission from the Blazar S4 0954+658
- Black hole spin inferred from 3:2 epicyclic resonance model of high-frequency quasi-periodic oscillations
- Stochastic oscillations of general relativistic disks
- Modeling the time-resolved quasi-periodic oscillations in AGNs
- Resonant Excitation of Disk Oscillations in Two-Armed-Deformed Disks and Application to High-Frequency QPOs
- Constraining models of twin peak quasi-periodic oscillations with realistic neutron star equations of state
- Super-spinning compact objects and models of high-frequency quasi-periodic oscillations observed in Galactic microquasars. II. Forced resonances
- Simple analytic formula relating the mass and spin of accreting compact objects to their rapid X-ray variability
- Constraining the mass and moment of inertia of neutron stars from quasi-periodic oscillations in X-ray binaries