← all papers · overview

Topological Quantum Gates With Quantum Dots

Abstract

We present an idealized model involving interacting quantum dots that can support both the dynamical and geometrical forms of quantum computation. We show that by employing a structure similar to the one used in the Aharonov-Bohm effect we can construct a topological two-qubit phase-gate that is to a large degree independent of the exact values of the control parameters and therefore resilient to control errors. The main components of the setup are realizable with present technology.

Related papers

Ranked by semantic similarity — how closely each paper's abstract matches this one (100% = near-identical topic).