Quantum gate in the decoherence-free subspace of trapped-ion qubits

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Published 23 November 2010 Europhysics Letters Association
, , Citation P. A. Ivanov et al 2010 EPL 92 30006 DOI 10.1209/0295-5075/92/30006

0295-5075/92/3/30006

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.

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10.1209/0295-5075/92/30006