The Universe as a Process of Unique Events
arXiv:1307.6167 · doi:10.1103/PhysRevD.90.084007
Abstract
We describe a new class of models of quantum space-time based on energetic causal sets and show that under natural conditions space-time emerges from them. These are causal sets whose causal links are labelled by energy and momentum and conservation laws are applied at events. The models are motivated by principles we propose govern microscopic physics which posit a fundamental irreversibility of time. One consequence is that each event in the history of the universe has a distinct causal relationship to the rest; this requires a novel form of dynamics which an be applied to uniquely distinctive events. We hence introduce a new kind of deterministic dynamics for a causal set in which new events are generated from pairs of progenitor events by a rule which is based on extremizing the distinctions between causal past sets of events. This dynamics is asymmetric in time, but we find evidence from numerical simulations of a 1+1 dimensional model, that an effective dynamics emerges which restores approximate time reversal symmetry. Energetic causal set models differ from other spacetime-free causal set approaches, e.g. Ref. [1] proposed causal sets based on quantum information processing systems, and Ref. [2] proposed causal sets constructed out of standard model particles. Finally we also present a natural twistorial representation of energetic causal sets.
26 pages, 5 figures
References in corpus (1)
Cited by in corpus (35)
- Network geometry with flavor: from complexity to quantum geometry
- Emergent Weyl spinors in multi-fermion systems
- Complex Quantum Network Geometries: Evolution and Phase Transitions
- Energetic Causal Sets
- MOND as a regime of quantum gravity
- Cosmological time and the constants of nature
- Quantum Gravity as an Information Network: Self-Organization of a 4D Universe
- Complex Quantum Network Manifolds in Dimension are Scale-Free
- Realism and causality I: Pilot wave and retrocausal models as possible facilitators
- On Quantum Gravity If Non-Locality Is Fundamental
- New action for simplicial gravity in four dimensions
- Quantum mechanics and the principle of maximal variety
- Spin foam models as energetic causal sets
- The dynamics of difference
- Time asymmetric extensions of general relativity
- Algebraic Classical and Quantum Field Theory on Causal Sets
- Dynamics of the cosmological and Newton's constant
- Realism and Causality II: Retrocausality in Energetic Causal Sets
- Reversing the irreversible: from limit cycles to emergent time symmetry
- A model for emergence of space and time
- Cosmological signatures of time-asymmetric gravity
- The thermodynamics of quantum spacetime histories
- Semiclassical limit problems with concurrent use of several clocks in quantum cosmology
- Emergence of Minkowski-Spacetime by Simple Deterministic Graph Rewriting
- Emergent classical geometries on boundaries of randomly connected tensor networks
- Critical Space-Time Networks and Geometric Phase Transitions from Frustrated Edge Antiferromagnetism
- The quantum mechanics of the present
- Views, variety and quantum mechanics
- Mother canonical tensor model
- Causal Event Networks: Cognition, Complexity and Physical Laws
- Twistor relative locality
- A democratic Cosmos?
- The Formation of the Universe: Conjectures
- General Formulation of Topos Many-Node Theory
- Generalized relative locality and causal sets