Implementing N-quantum phase gate via circuit QED with qubit–qubit interaction

Author:

Said T.1,Chouikh A.1,Essammouni K.1,Bennai M.2

Affiliation:

1. Laboratoire de Physique de la Matière Condensée, Equipe Physique Quantique et Applications, Faculté des Sciences Ben M’sik, Université Hassan II, B.P. 7955, Casablanca, Morocco

2. LPHE-Modelisation et Simulation, Faculté des Sciences Rabat, Université de Rabat, Morocco

Abstract

We propose a method for realizing a quantum phase gate of one qubit simultaneously controlling [Formula: see text] target qubits based on the qubit–qubit interaction. We show how to implement the proposed gate with one transmon qubit simultaneously controlling [Formula: see text] transmon qubits in a circuit QED driven by a strong microwave field. In our scheme, the operation time of this phase gate is independent of the number [Formula: see text] of qubits. On the other hand, this gate can be realized in a time of nanosecond-scale much smaller than the decoherence time and dephasing time both being the time of microsecond-scale. Numerical simulation of the occupation probabilities of the second excited lever shows that the scheme could be achieved efficiently within current technology.

Publisher

World Scientific Pub Co Pte Lt

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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