We study analytically the asymptotic late-time evolution of realistic rotating collapse. This is done by considering the asymptotic late-time solutions of Teukolsky's master equation, which governs the evolution of gravitational, electromagnetic, neutrino and scalar perturbations fields on Kerr spacetimes. In accordance with the no-hair conjecture for rotating black-holes we show that the asymptotic solutions develop inverse power-law tails at the asymptotic regions of timelike infinity, null infinity and along the black-hole outer horizon (where the power-law behaviour is multiplied by an oscillatory term caused by the dragging of reference frames). The dumping exponents characterizing the asymptotic solutions at timelike infinity and alon...
Outside a black hole, perturbation fields die off in time as 1/t n. For spherical holes n = 2ℓ + 3 w...
A numerical study of the evolution of a massless scalar field in the background of rotating black ho...
We study analytically, via the Newman-Penrose formalism, the late-time decay of linear electromagnet...
We present an analytic method for calculating the late-time tails of a linear scalar field outside a...
We present a new analytic approach for the study of late time evolution of linear test-fields, propa...
We study analytically the initial value problem for a charged massless scalar-field on a Reissner-No...
We study the nonlinear gravitational collapse of a charged massless scalar-field. We confirm the exi...
We study analytically, via the Newman-Penrose formalism, the late time decay of scalar, electromagne...
We apply a new analytic scheme, developed in a preceding paper, in order to calculate the late time ...
We develop a complete and systematic analytical approach to field perturbations of extremal Kerr spa...
We study the power-law tails in the evolution of massless fields around a fixed background geometry ...
We present an analytic method for calculating the late-time tails of a linear scalar field outside a...
We investigate both the intermediate late-time tail and the asymptotic tail behavior of the charged ...
Motivated by results of recent analytic studies, we present a numerical investigation of the late-ti...
In this brief note, we revisit the study of the leading order late time decay tails of massless scal...
Outside a black hole, perturbation fields die off in time as 1/t n. For spherical holes n = 2ℓ + 3 w...
A numerical study of the evolution of a massless scalar field in the background of rotating black ho...
We study analytically, via the Newman-Penrose formalism, the late-time decay of linear electromagnet...
We present an analytic method for calculating the late-time tails of a linear scalar field outside a...
We present a new analytic approach for the study of late time evolution of linear test-fields, propa...
We study analytically the initial value problem for a charged massless scalar-field on a Reissner-No...
We study the nonlinear gravitational collapse of a charged massless scalar-field. We confirm the exi...
We study analytically, via the Newman-Penrose formalism, the late time decay of scalar, electromagne...
We apply a new analytic scheme, developed in a preceding paper, in order to calculate the late time ...
We develop a complete and systematic analytical approach to field perturbations of extremal Kerr spa...
We study the power-law tails in the evolution of massless fields around a fixed background geometry ...
We present an analytic method for calculating the late-time tails of a linear scalar field outside a...
We investigate both the intermediate late-time tail and the asymptotic tail behavior of the charged ...
Motivated by results of recent analytic studies, we present a numerical investigation of the late-ti...
In this brief note, we revisit the study of the leading order late time decay tails of massless scal...
Outside a black hole, perturbation fields die off in time as 1/t n. For spherical holes n = 2ℓ + 3 w...
A numerical study of the evolution of a massless scalar field in the background of rotating black ho...
We study analytically, via the Newman-Penrose formalism, the late-time decay of linear electromagnet...