Eliminating qubit type cross-talk in the $\textit{omg}$ protocol
Abstract
The protocol is a promising paradigm that uses multiple, application-specific qubit subspaces within the Hilbert space of each single atom during quantum information processing. A key assumption for operation is that a subspace can be accessed independently without deleterious effects on information stored in other subspaces. We find that intensity noise during laser-based quantum gates in one subspace can cause decoherence in other subspaces, potentially complicating operation. We show, however, that a magnetic-field-induced vector light shift can be used to eliminate this source of decoherence. As this technique requires simply choosing a certain, magnetic field dependent, polarization for the gate lasers it is straightforward to implement and potentially helpful for based quantum technology.
Cite
@article{arxiv.2310.10905,
title = {Eliminating qubit type cross-talk in the $\textit{omg}$ protocol},
author = {Samuel R. Vizvary and Zachary J. Wall and Matthew J. Boguslawski and Michael Bareian and Andrei Derevianko and Wesley C. Campbell and Eric R. Hudson},
journal= {arXiv preprint arXiv:2310.10905},
year = {2024}
}
Comments
5 + 3 pages, 3 + 2 figures