Topological phase for entangled two-qubit states and the representation of the SO(3)group
Abstract
We discuss the representation of the group by two-qubit maximally entangled states (MES). We analyze the correspondence between and the set of two-qubit MES which are experimentally realizable. As a result, we offer a new interpretation of some recently proposed experiments based on MES. Employing the tools of quantum optics we treat in terms of two-qubit MES some classical experiments in neutron interferometry, which showed the -phase accrued by a spin- particle precessing in a magnetic field. By so doing, we can analyze the extent to which the recently proposed experiments - and future ones of the same sort - would involve essentially new physical aspects as compared with those performed in the past. We argue that the proposed experiments do extend the possibilities for displaying the double connectedness of , although for that to be the case it results necessary to map elements of onto physical operations acting on two-level systems.
Keywords
Cite
@article{arxiv.quant-ph/0511034,
title = {Topological phase for entangled two-qubit states and the representation of the SO(3)group},
author = {F. De Zela},
journal= {arXiv preprint arXiv:quant-ph/0511034},
year = {2015}
}
Comments
25 pages, 9 figures