Quantum gate in the decoherence-free subspace of trapped ion qubits
Quantum Physics
2015-05-14 v2
Abstract
We propose a geometric phase gate in a decoherence-free subspace with trapped ions. The quantum information is encoded in the Zeeman sublevels of the ground-state and two physical qubits to make up one logical qubit with ultra long coherence time. Single- and two-qubit operations together with the transport and splitting of linear ion crystals allow for a robust and decoherence-free scalable quantum processor. For the ease of the phase gate realization we employ one Raman laser field on four ions simultaneously, i.e. no tight focus for addressing. The decoherence-free subspace is left neither during gate operations nor during the transport of quantum information.
Keywords
Cite
@article{arxiv.0909.5397,
title = {Quantum gate in the decoherence-free subspace of trapped ion qubits},
author = {Peter A. Ivanov and Ulrich G. Poschinger and Kilian Singer and Ferdinand Schmidt-Kaler},
journal= {arXiv preprint arXiv:0909.5397},
year = {2015}
}
Comments
6 pages, 6 figures