It has been known for a long time that Einstein’s field equations when projected onto a black hole horizon look very similar to a Navier-Stokes equation in suitable variables. More recently, it was shown that the projection of Einstein’s equation onto any null surface in any spacetime reduces exactly to the Navier-Stokes form when viewed in the freely falling frame. We develop an action principle, the extremization of which leads to the above result, in an arbitrary spacetime. The degrees of freedom varied in the action principle are the null vectors in the spacetime and not the metric tensor. The same action principle was introduced earlier in the context of the emergent gravity paradigm wherein it was shown that the corresponding Lagrangi...
Several different but equivalent forms of the spherical black hole (Schwarzschild) are known, as wel...
Fluid dynamics and gravitational physics are deeply interconnected by means of holography, a recent ...
The largest outstanding puzzle in theoretical physics at the moment is the mystery of how Einstein's...
It has been known for a long time that Einstein’s field equations when projected onto a black hole h...
The dynamical evolution of the Hajicek $1$-form is derived in Einstein-Cartan (EC) theory. We find t...
If gravity is an emergent phenomenon, as suggested by several recent results, then the structure of ...
This paper gives an overview of the recently-formulated fluid/gravity correspondence, which was deve...
As is well known, in order for the Einstein-Hilbert action to have a well defined variation, and the...
A pseudo-field theoretic reformulation of the Newton--Euler dynamics of isolated, gravitating fluids...
We express Einstein's field equations for a spherically symmetric ball of general fluid such that th...
Abstract Over the past few decades, a host of theoretical evidence has surfaced that suggest a conne...
The null surfaces of a spacetime act as one-way membranes and can block information for a correspond...
Abstract. In this note, we study energy estimates for Einstein vacuum equations in order to prove th...
Recent works have demonstrated that one can construct a (d + 2) dimensional solution of the vacuum E...
The black hole entropy formula applied to local Rindler horizon at each spacetime point has been use...
Several different but equivalent forms of the spherical black hole (Schwarzschild) are known, as wel...
Fluid dynamics and gravitational physics are deeply interconnected by means of holography, a recent ...
The largest outstanding puzzle in theoretical physics at the moment is the mystery of how Einstein's...
It has been known for a long time that Einstein’s field equations when projected onto a black hole h...
The dynamical evolution of the Hajicek $1$-form is derived in Einstein-Cartan (EC) theory. We find t...
If gravity is an emergent phenomenon, as suggested by several recent results, then the structure of ...
This paper gives an overview of the recently-formulated fluid/gravity correspondence, which was deve...
As is well known, in order for the Einstein-Hilbert action to have a well defined variation, and the...
A pseudo-field theoretic reformulation of the Newton--Euler dynamics of isolated, gravitating fluids...
We express Einstein's field equations for a spherically symmetric ball of general fluid such that th...
Abstract Over the past few decades, a host of theoretical evidence has surfaced that suggest a conne...
The null surfaces of a spacetime act as one-way membranes and can block information for a correspond...
Abstract. In this note, we study energy estimates for Einstein vacuum equations in order to prove th...
Recent works have demonstrated that one can construct a (d + 2) dimensional solution of the vacuum E...
The black hole entropy formula applied to local Rindler horizon at each spacetime point has been use...
Several different but equivalent forms of the spherical black hole (Schwarzschild) are known, as wel...
Fluid dynamics and gravitational physics are deeply interconnected by means of holography, a recent ...
The largest outstanding puzzle in theoretical physics at the moment is the mystery of how Einstein's...