Rossby waves (r-modes) in rapidly rotating neutron stars are unstable because of the emission of gravitational radiation. We study saturation of this instability by nonlinear transfer of energy to stellar "inertial" oscillation modes. We present detailed calculations of stellar inertial modes in the WKB limit, their linear damping by bulk and shear viscosity, and the nonlinear coupling forces among these modes. The saturation amplitude is derived in the extreme limits of strong or weak driving by radiation reaction, as compared to the damping rate of low order inertial modes. We find the saturation energy is {\it extremely small}, at least four orders of magnitude smaller than that found by previous investigators. We discuss the consequence...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...
Rossby waves (r-modes) in rapidly rotating neutron stars are unstable because of the emission of gra...
Recent work has raised the exciting possibility that r-mode pulsations (Rossby waves) in rotating ne...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...
Rotating neutron stars have modes that are driven unstable by gravitational radiation reaction, prin...
Gravitational radiation (GR) drives an instability in certain modes of rotating stars. This instabil...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...
Nonlinear interactions among the inertial modes of a rotating fluid can be described by a network of...
Nonlinear interactions among the inertial modes of a rotating fluid can be described by a network of...
Since the last Amaldi meeting in 1997 we have learned that the r-modes of rapidly rotating neutron s...
We model the nonlinear saturation of the r-mode instability via three-mode couplings and the effects...
We model the nonlinear saturation of the r-mode instability via three-mode couplings and the effects...
We model the nonlinear saturation of the r-mode instability via three-mode couplings and the effects...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...
Rossby waves (r-modes) in rapidly rotating neutron stars are unstable because of the emission of gra...
Recent work has raised the exciting possibility that r-mode pulsations (Rossby waves) in rotating ne...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...
Rotating neutron stars have modes that are driven unstable by gravitational radiation reaction, prin...
Gravitational radiation (GR) drives an instability in certain modes of rotating stars. This instabil...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...
Nonlinear interactions among the inertial modes of a rotating fluid can be described by a network of...
Nonlinear interactions among the inertial modes of a rotating fluid can be described by a network of...
Since the last Amaldi meeting in 1997 we have learned that the r-modes of rapidly rotating neutron s...
We model the nonlinear saturation of the r-mode instability via three-mode couplings and the effects...
We model the nonlinear saturation of the r-mode instability via three-mode couplings and the effects...
We model the nonlinear saturation of the r-mode instability via three-mode couplings and the effects...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...
A newly discovered instability in rotating neutron stars, driven by gravitational radiation reaction...