Spintronic single qubit gate based on a quantum ring with spin-orbit interaction
Abstract
In a quantum ring connected with two external leads the spin properties of an incoming electron are modified by the spin-orbit interaction resulting in a transformation of the qubit state carried by the spin. The ring acts as a one qubit spintronic quantum gate whose properties can be varied by tuning the Rashba parameter of the spin-orbit interaction, by changing the relative position of the junctions, as well as by the size of the ring. We show that a large class of unitary transformations can be attained with already one ring -- or a few rings in series -- including the important cases of the Z, X, and Hadamard gates. By choosing appropriate parameters the spin transformations can be made unitary, which corresponds to lossless gates.
Cite
@article{arxiv.quant-ph/0406091,
title = {Spintronic single qubit gate based on a quantum ring with spin-orbit interaction},
author = {Peter Foldi and Balazs Molnar and Mihaly G. Benedict and F. M. Peeters},
journal= {arXiv preprint arXiv:quant-ph/0406091},
year = {2009}
}
Comments
4 pages, 4 figures