We describe the first axisymmetric numerical code based on the generalized harmonic formulation of the Einstein equations which is regular at the axis. We test the code by investigating gravitational collapse of distributions of complex scalar field in a Kaluza-Klein spacetime. One of the key issues of the harmonic formulation is the choice of the gauge source functions, and we conclude that a damped wave gauge is remarkably robust in this case. Our preliminary study indicates that evolution of regular initial data leads to formation both of black holes with spherical and cylindrical horizon topologies. Intriguingly, we find evidence that near threshold for black hole formation the number of outcomes proliferates. Specifically, the collapsi...
We present a new numerical code designed to solve the Einstein field equations for axisymmetric spac...
We have developed a numerical code to study the evolution of self-gravitating matter in dynamic blac...
We have developed a numerical code to study the evolution of self-gravitating matter in dynamic blac...
We describe the first axisymmetric numerical code based on the generalized harmonic formulation of t...
We describe the first axisymmetric numerical code based on the generalized harmonic formulation of t...
A new numerical scheme to solve the Einstein field equations based upon the generalized harmonic dec...
We consider the numerical evolution of dynamic black hole initial data sets with a full 3D, nonlinea...
We present preliminary results in our long-term project of studying the evolution of matter in a dyn...
We consider the numerical evolution of dynamic black hole initial data sets with a full 3D, nonlinea...
We describe an explicit in time, finite-difference code designed to simulate black holes by using th...
We describe an explicit in time, finite-difference code designed to simulate black holes by using th...
A new numerical scheme to solve the Einstein field equations based upon the generalized harmonic dec...
We present a new formulation of Einstein's equations for an axisymmetric spacetime with vanishing tw...
A new numerical scheme to solve the Einstein field equations based upon the generalized harmonic dec...
We present preliminary results in our long-term project of studying the evolution of matter in a dyn...
We present a new numerical code designed to solve the Einstein field equations for axisymmetric spac...
We have developed a numerical code to study the evolution of self-gravitating matter in dynamic blac...
We have developed a numerical code to study the evolution of self-gravitating matter in dynamic blac...
We describe the first axisymmetric numerical code based on the generalized harmonic formulation of t...
We describe the first axisymmetric numerical code based on the generalized harmonic formulation of t...
A new numerical scheme to solve the Einstein field equations based upon the generalized harmonic dec...
We consider the numerical evolution of dynamic black hole initial data sets with a full 3D, nonlinea...
We present preliminary results in our long-term project of studying the evolution of matter in a dyn...
We consider the numerical evolution of dynamic black hole initial data sets with a full 3D, nonlinea...
We describe an explicit in time, finite-difference code designed to simulate black holes by using th...
We describe an explicit in time, finite-difference code designed to simulate black holes by using th...
A new numerical scheme to solve the Einstein field equations based upon the generalized harmonic dec...
We present a new formulation of Einstein's equations for an axisymmetric spacetime with vanishing tw...
A new numerical scheme to solve the Einstein field equations based upon the generalized harmonic dec...
We present preliminary results in our long-term project of studying the evolution of matter in a dyn...
We present a new numerical code designed to solve the Einstein field equations for axisymmetric spac...
We have developed a numerical code to study the evolution of self-gravitating matter in dynamic blac...
We have developed a numerical code to study the evolution of self-gravitating matter in dynamic blac...