Path summation offers a flexible general approach to quantum theory, including quantum gravity. In the latter setting, summation is performed over a space of evolutionary pathways in a history configuration space. Discrete causal histories called acyclic directed sets offer certain advantages over similar models appearing in the literature, such as causal sets. Path summation defined in terms of these histories enables derivation of discrete Schrödinger-type equations describing quantum spacetime dynamics for any suitable choice of algebraic quantities associated with each evolutionary pathway. These quantities, called phases, collectively define a phase map from the space of evolutionary pathways to a target object, such as the unit circle...
The main aspects of a discrete phase space formalism are presented and the discrete dynamical bracke...
In a gravitational context, canonical methods offer an intuitive picture of the dynamics and simplif...
We reformulate our dynamical networks, developed elsewhere, as causal sets, more properly, time depe...
This article presents a simplified version of the author’s previous work. We first construct a causa...
Non-relativistic quantum theory is derived from information codified into an appropriate statistical...
We begin by describing a sequential growth model in which the universe grows one element at a time i...
Maximum entropy principle and Souriau’s symplectic generalization of Gibbs states have provided cruc...
International audienceWe develop an approach to quantum dynamics based on quantum phase space trajec...
This paper is based on the causal set approach to discrete quantum gravity. We first describe a clas...
We discuss the causal set approach to discrete quantum gravity. We begin by describing a classical s...
We consider a covariant causal set approach to discrete quantum gravity. We first review the microsc...
We propose entropic order parameters that capture the physics of generalized symmetries and phases i...
In these lectures we describe how a theory of quantum gravity may be constructed in terms of a latti...
We consider a covariant causal set approach to discrete quantum gravity. We first review the microsc...
This article presents a simplified version of the author’s previous work. We first construct a causa...
The main aspects of a discrete phase space formalism are presented and the discrete dynamical bracke...
In a gravitational context, canonical methods offer an intuitive picture of the dynamics and simplif...
We reformulate our dynamical networks, developed elsewhere, as causal sets, more properly, time depe...
This article presents a simplified version of the author’s previous work. We first construct a causa...
Non-relativistic quantum theory is derived from information codified into an appropriate statistical...
We begin by describing a sequential growth model in which the universe grows one element at a time i...
Maximum entropy principle and Souriau’s symplectic generalization of Gibbs states have provided cruc...
International audienceWe develop an approach to quantum dynamics based on quantum phase space trajec...
This paper is based on the causal set approach to discrete quantum gravity. We first describe a clas...
We discuss the causal set approach to discrete quantum gravity. We begin by describing a classical s...
We consider a covariant causal set approach to discrete quantum gravity. We first review the microsc...
We propose entropic order parameters that capture the physics of generalized symmetries and phases i...
In these lectures we describe how a theory of quantum gravity may be constructed in terms of a latti...
We consider a covariant causal set approach to discrete quantum gravity. We first review the microsc...
This article presents a simplified version of the author’s previous work. We first construct a causa...
The main aspects of a discrete phase space formalism are presented and the discrete dynamical bracke...
In a gravitational context, canonical methods offer an intuitive picture of the dynamics and simplif...
We reformulate our dynamical networks, developed elsewhere, as causal sets, more properly, time depe...