Non-classicality of temporal correlations
Abstract
The results of space-like separated measurements are independent of distant measurement settings, a property one might call two-way no-signalling. In contrast, time-like separated measurements are only one-way no-signalling since the past is independent of the future but not vice-versa. For this reason temporal correlations that are formally identical to non-classical spatial correlations can still be modelled classically. We define non-classical temporal correlations as the ones which cannot be simulated by propagating in time a classical information content of a quantum system. We first show that temporal correlations between results of any projective quantum measurements on a qubit can be simulated classically. Then we present a sequence of POVM measurements on a single -level quantum system that cannot be explained by propagating in time -level classical system and using classical computers with unlimited memory.
Cite
@article{arxiv.1501.03505,
title = {Non-classicality of temporal correlations},
author = {Stephen Brierley and Adrian Kosowski and Marcin Markiewicz and Tomasz Paterek and Anna Przysiezna},
journal= {arXiv preprint arXiv:1501.03505},
year = {2016}
}
Comments
6 pages, 1 figure