The superradiant instability modes of ultralight massive vector bosons are studied for weakly charged rotating black holes in Einstein-Maxwell gravity (the Kerr- Newman solution) and low-energy heterotic string theory (the Kerr-Sen black hole). We show that in both these cases, the corresponding massive vector (Proca) equations can be fully separated, exploiting the hidden symmetry present in these spacetimes. The resultant ordinary differential equations are solved numerically to find the most unstable modes of the Proca field in the two backgrounds and compared to the vacuum (Kerr black hole) case
We consider linear gravitational perturbations of the Kerr brane, an exact solution of vacuum Einste...
We investigate the superradiant instability of Kerr black holes under a massive scalar perturbation....
We provide strong evidence that, up to 99.999% of extremality, Kerr-Newman black holes (KNBHs) are l...
We discuss a general method to study linear perturbations of slowly rotating black holes which is va...
We discuss a general method to study linear perturbations of slowly rotating black holes which is va...
We consider linear gravitational perturbations of the Kerr brane, an exact solution of vacuum Einste...
This thesis presents recent studies on test scalar and vector fields around black holes. It is separ...
We analyse the superradiant stability of braneworld extremal Kerr and Kerr-Newman black holes under ...
The field of a massive vector boson in the vicinity of a rotating black hole is known to suffer an i...
Massive bosonic fields of arbitrary spin are predicted by general extensions of the standard model. ...
Light bosonic degrees of freedom have become a serious candidate for dark matter, which seems to per...
Magnetic fields surrounding spinning black holes can confine radiation and trigger superradiant inst...
We discuss a method to study linear perturbations of generic rotating spacetimes in the slow-rotatio...
We consider linear gravitational perturbations of the Kerr brane, an exact solution of vacuum Einste...
We consider linear gravitational perturbations of the Kerr brane, an exact solution of vacuum Einste...
We consider linear gravitational perturbations of the Kerr brane, an exact solution of vacuum Einste...
We investigate the superradiant instability of Kerr black holes under a massive scalar perturbation....
We provide strong evidence that, up to 99.999% of extremality, Kerr-Newman black holes (KNBHs) are l...
We discuss a general method to study linear perturbations of slowly rotating black holes which is va...
We discuss a general method to study linear perturbations of slowly rotating black holes which is va...
We consider linear gravitational perturbations of the Kerr brane, an exact solution of vacuum Einste...
This thesis presents recent studies on test scalar and vector fields around black holes. It is separ...
We analyse the superradiant stability of braneworld extremal Kerr and Kerr-Newman black holes under ...
The field of a massive vector boson in the vicinity of a rotating black hole is known to suffer an i...
Massive bosonic fields of arbitrary spin are predicted by general extensions of the standard model. ...
Light bosonic degrees of freedom have become a serious candidate for dark matter, which seems to per...
Magnetic fields surrounding spinning black holes can confine radiation and trigger superradiant inst...
We discuss a method to study linear perturbations of generic rotating spacetimes in the slow-rotatio...
We consider linear gravitational perturbations of the Kerr brane, an exact solution of vacuum Einste...
We consider linear gravitational perturbations of the Kerr brane, an exact solution of vacuum Einste...
We consider linear gravitational perturbations of the Kerr brane, an exact solution of vacuum Einste...
We investigate the superradiant instability of Kerr black holes under a massive scalar perturbation....
We provide strong evidence that, up to 99.999% of extremality, Kerr-Newman black holes (KNBHs) are l...