arXiv Analytics

Sign in

arXiv:1707.08455 [quant-ph]AbstractReferencesReviewsResources

Quantum Walks, Weyl equation and the Lorentz group

Alessandro Bisio, Giacomo Mauro D'Ariano, Paolo Perinotti

Published 2017-07-26Version 1

Quantum cellular automata and quantum walks provide a framework for the foundations of quantum field theory, since the equations of motion of free relativistic quantum fields can be derived as the small wave-vector limit of quantum automata and walks starting from very general principles. The intrinsic discreteness of this framework is reconciled with the continuous Lorentz symmetry by reformulating the notion of inertial reference frame in terms of the constants of motion of the quantum walk dynamics. In particular, among the symmetries of the quantum walk which recovers the Weyl equation--the so called Weyl walk--one finds a non linear realisation of the Poincar\'e group, which recovers the usual linear representation in the small wave-vector limit. In this paper we characterise the full symmetry group of the Weyl walk which is shown to be a non linear realization of a group which is the semidirect product of the Poincar\'e group and the group of dilations.

Comments: 9 pages, 2 figures
Journal: Foundations of Physics, Volume 47, Issue 8, pp 1065-1076 (2017)
Categories: quant-ph, hep-th
Related articles: Most relevant | Search more
arXiv:quant-ph/0401098 (Published 2004-01-18)
Lorentz Group in Ray Optics
arXiv:0807.3063 [quant-ph] (Published 2008-07-19)
Transport and Quantum Walk of Nonclassical Light in Coupled Waveguides
arXiv:1905.04239 [quant-ph] (Published 2019-05-10)
Absorption Probabilities of Quantum Walks