We analyze local spin-echo procedures to protect entanglement between two non-interacting qubits, each subject to pure-dephasing random telegraph noise. For superconducting qubits this simple model captures characteristic features of the effect of bistable impurities coupled to the device. An analytic expression for the entanglement dynamics is reported. Peculiar features related to the non-Gaussian nature of the noise already observed in the single qubit dynamics also occur in the entanglement dynamics for proper values of the ratio g = v= , between the qubitimpurity coupling strength and the switching rate of the random telegraph process, and of the separation between the pulses Δt. We find that the echo procedure may delay the disappearance of entanglement, cancel the dynamical structure of entanglement revivals and dark periods, and induce peculiar plateau-like behaviors of the concurrence.

Lo Franco, R., D’Arrigo, A., Falci, G., Compagno, G., Paladino E (2013). Spin-echo entanglement protection from random telegraph noise. PHYSICA SCRIPTA, T153, 014043-014047 [10.1088/0031-8949/2013/T153/014043].

Spin-echo entanglement protection from random telegraph noise

LO FRANCO, Rosario;COMPAGNO, Giuseppe;
2013-01-01

Abstract

We analyze local spin-echo procedures to protect entanglement between two non-interacting qubits, each subject to pure-dephasing random telegraph noise. For superconducting qubits this simple model captures characteristic features of the effect of bistable impurities coupled to the device. An analytic expression for the entanglement dynamics is reported. Peculiar features related to the non-Gaussian nature of the noise already observed in the single qubit dynamics also occur in the entanglement dynamics for proper values of the ratio g = v= , between the qubitimpurity coupling strength and the switching rate of the random telegraph process, and of the separation between the pulses Δt. We find that the echo procedure may delay the disappearance of entanglement, cancel the dynamical structure of entanglement revivals and dark periods, and induce peculiar plateau-like behaviors of the concurrence.
Settore FIS/03 - Fisica Della Materia
Lo Franco, R., D’Arrigo, A., Falci, G., Compagno, G., Paladino E (2013). Spin-echo entanglement protection from random telegraph noise. PHYSICA SCRIPTA, T153, 014043-014047 [10.1088/0031-8949/2013/T153/014043].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/66665
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