I show that combining the principle of equivalence and the principle of general covariance with the known properties of local Rindler horizons, perceived by accelerated observers, leads to the following inescapable conclusion: The field equations describing gravity in any diffeomorphism-invariant theory must have a thermodynamic interpretation. This synthesis of quantum theory, thermodynamics and gravity shows that the gravitational dynamics can be interpreted completely in terms of entropy balance between matter and space-time. This idea has far-reaching implications for the microstructure of space-time and quantum gravity
Abstract. The Einstein-Hilbert action (and thus the dynamics of gravity) can be obtained by: (i) com...
It has been shown that the Einstein equation can be derived from the requirement that the First Law ...
The origins of dynamics, the physical basis of time asymmetry and the nature of gravity are all cons...
The two surprising features of gravity are (a) the principle of equivalence and (b) the connection b...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
For general metric theories of gravity, we compare the approach that describes/derives the field equ...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
For general metric theories of gravity, we compare the approach that describes/derives the field equ...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
The Einstein-Hilbert action (and thus the dynamics of gravity) can be obtained by: (i) combining the...
It is possible to provide a physical interpretation for the field equations of gravity based on a th...
Abstract. The Einstein-Hilbert action (and thus the dynamics of gravity) can be obtained by: (i) com...
It has been shown that the Einstein equation can be derived from the requirement that the First Law ...
The origins of dynamics, the physical basis of time asymmetry and the nature of gravity are all cons...
The two surprising features of gravity are (a) the principle of equivalence and (b) the connection b...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
For general metric theories of gravity, we compare the approach that describes/derives the field equ...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
For general metric theories of gravity, we compare the approach that describes/derives the field equ...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
Gravity is a macroscopic manifestation of a microscopic quantum theory of space-time, just as the th...
The Einstein-Hilbert action (and thus the dynamics of gravity) can be obtained by: (i) combining the...
It is possible to provide a physical interpretation for the field equations of gravity based on a th...
Abstract. The Einstein-Hilbert action (and thus the dynamics of gravity) can be obtained by: (i) com...
It has been shown that the Einstein equation can be derived from the requirement that the First Law ...
The origins of dynamics, the physical basis of time asymmetry and the nature of gravity are all cons...