In this review we present the most general form of the Janis–Newman algorithm. This extension allows generating configurations which contain all bosonic fields with spin less than or equal to two (real and complex scalar fields, gauge fields, metric field) and with five of the six parameters of the Plebański–Demiański metric (mass, electric charge, magnetic charge, NUT charge and angular momentum). Several examples are included to illustrate the algorithm. We also discuss the extension of the algorithm to other dimensions
Obtaining solutions of the Einstein field equations describing spinning compact bodies is typically ...
The strategy of obtaining the familiar Kerr-Newman solution in general relativity is based on either...
The complete family of exact solutions representing accelerating and rotating black holes with possi...
In this review we present the most general form of the Janis–Newman algorithm. This extension allows...
International audienceIn this review we present the most general form of the Janis–Newman algorithm....
International audienceThe Demiański–Janis–Newman (DJN) algorithm is an original solution generating ...
International audienceThe Demiański–Janis–Newman (DJN) algorithm is an original solution generating ...
International audienceThe Janis–Newman algorithm has been shown to be successful in finding new stat...
International audienceThe Janis–Newman algorithm has been shown to be successful in finding new stat...
International audienceWe summarize the recent generalization of the Janis-Newman algorithm in view o...
An exact solution of Einstein’s equations which represents a pair of accelerating and rotating black...
An exact solution of Einstein's equations which represents a pair of accelerating and rotating black...
Abstract We present a general procedure, based on the Ehlers transformation of the Ernst equations, ...
This paper exploits the power of the Cayley–Dickson algebra to generate stationary rotating black h...
Abstract We construct supersymmetric black holes with rotation or NUT charge for the ℂ P ¯ n $$ {\ov...
Obtaining solutions of the Einstein field equations describing spinning compact bodies is typically ...
The strategy of obtaining the familiar Kerr-Newman solution in general relativity is based on either...
The complete family of exact solutions representing accelerating and rotating black holes with possi...
In this review we present the most general form of the Janis–Newman algorithm. This extension allows...
International audienceIn this review we present the most general form of the Janis–Newman algorithm....
International audienceThe Demiański–Janis–Newman (DJN) algorithm is an original solution generating ...
International audienceThe Demiański–Janis–Newman (DJN) algorithm is an original solution generating ...
International audienceThe Janis–Newman algorithm has been shown to be successful in finding new stat...
International audienceThe Janis–Newman algorithm has been shown to be successful in finding new stat...
International audienceWe summarize the recent generalization of the Janis-Newman algorithm in view o...
An exact solution of Einstein’s equations which represents a pair of accelerating and rotating black...
An exact solution of Einstein's equations which represents a pair of accelerating and rotating black...
Abstract We present a general procedure, based on the Ehlers transformation of the Ernst equations, ...
This paper exploits the power of the Cayley–Dickson algebra to generate stationary rotating black h...
Abstract We construct supersymmetric black holes with rotation or NUT charge for the ℂ P ¯ n $$ {\ov...
Obtaining solutions of the Einstein field equations describing spinning compact bodies is typically ...
The strategy of obtaining the familiar Kerr-Newman solution in general relativity is based on either...
The complete family of exact solutions representing accelerating and rotating black holes with possi...