Weyl, Dirac and Maxwell Quantum Cellular Automata: analitical solutions and phenomenological predictions of the Quantum Cellular Automata Theory of Free Fields
arXiv:1601.04842 · doi:10.1007/s10701-015-9927-0
Abstract
Recent advances on quantum foundations achieved the derivation of free quantum field theory from general principles, without referring to mechanical notions and relativistic invariance. From the aforementioned principles a quantum cellular automata (QCA) theory follows, whose relativistic limit of small wave-vector provides the free dynamics of quantum field theory. The QCA theory can be regarded as an extended quantum field theory that describes in a unified way all scales ranging from an hypothetical discrete Planck scale up to the usual Fermi scale. The present paper reviews the elementary automaton theory for the Weyl field, and the composite automata for Dirac and Maxwell fields. We then give a simple analysis of the dynamics in the momentum space in terms of a dispersive differential equation for narrowband wave-packets, and some account on the position space description in terms of a discrete path-integral approach. We then review the phenomenology of the free-field automaton and consider possible visible effects arising from the discreteness of the framework. We conclude introducing the consequences of the automaton distorted dispersion relation, leading to a deformed Lorentz covariance and to possible effects on the thermodynamics of ideal gases.
13 pages, 5 figures
References in corpus (5)
- A Quantum Approximate Optimization Algorithm
- Exponential algorithmic speedup by quantum walk
- Observing Zitterbewegung for photons near the Dirac point of a two-dimensional photonic crystal
- Prospects for constraining quantum gravity dispersion with near term observations
- White dwarfs as test objects of Lorentz violations
Cited by in corpus (17)
- A review of Quantum Cellular Automata
- Physics Without Physics: The Power of Information-theoretical Principles
- Quantum cellular automata and quantum field theory in two spatial dimensions
- Free quantum field theory from quantum cellular automata: derivation of Weyl, Dirac and Maxwell quantum cellular automata
- Quantum walks, deformed relativity, and Hopf algebra symmetries
- Quantum field theory from a quantum cellular automaton in one spatial dimension and a no-go theorem in higher dimensions
- Fermionic and bosonic quantum field theories from quantum cellular automata in three spatial dimensions
- Does causal dynamics imply local interactions?
- Cellular automata in operational probabilistic theories
- Chirality from quantum walks without quantum coin
- Discrete time Dirac quantum walk in 3+1 dimensions
- Path-sum solution of the Weyl Quantum Walk in 3+1 dimensions
- Quantum Electrodynamics from Quantum Cellular Automata, and the Tension Between Symmetry, Locality and Positive Energy
- Quantum spatial search with electric potential : long-time dynamics and robustness to noise
- Simulating the discrete-time quantum walk dynamics with simultaneous coin and shift operators
- Mimicking the Hadamard discrete-time quantum walk with a time-independent Hamiltonian
- Bounds on QCA Lattice Spacing from Data on Lorentz Violation