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Article Dans Une Revue Physical Review Letters Année : 2011

Protected quantum computation with multiple resonators in ultrastrong coupling circuit QED

Résumé

We investigate theoretically the dynamical behavior of a qubit obtained with the two ground eigenstates of an ultrastrong coupling circuit-QED system consisting of a finite number of Josephson fluxonium atoms inductively coupled to a transmission line resonator. We show an universal set of quantum gates by using multiple transmission line resonators (each resonator represents a single qubit). We discuss the intrinsic 'anisotropic' nature of noise sources for fluxonium artificial atoms. Through a master equation treatment with colored noise and manylevel dynamics, we prove that, for a general class of anisotropic noise sources, the coherence time of the qubit and the fidelity of the quantum operations can be dramatically improved in an optimal regime of ultrastrong coupling, where the ground state is an entangled photonic 'cat' state.
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Dates et versions

hal-00598568 , version 1 (06-06-2011)
hal-00598568 , version 2 (25-08-2011)

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Pierre Nataf, Cristiano Ciuti. Protected quantum computation with multiple resonators in ultrastrong coupling circuit QED. Physical Review Letters, 2011, 107, pp.190402. ⟨10.1103/PhysRevLett.107.190402⟩. ⟨hal-00598568v2⟩
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