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Trapped Ion Quantum Computing
Ancillary qubit spectroscopy of cavity (circuit) QED vacua
arXiv
Authors: Jared Lolli, Alexandre Baksic, David Nagy, Vladimir E. Manucharyan, Cristiano Ciuti
Year
2014
Paper ID
46353
Status
Preprint
Abstract Read
~2 min
Abstract Words
122
Citations
N/A
Abstract
We investigate theoretically how the spectroscopy of an ancillary qubit can probe cavity (circuit) QED ground states containing photons. We consider three classes of systems (Dicke, Tavis-Cummings and Hopfield-like models), where non-trivial vacua are the result of ultrastrong coupling between N two-level systems and a single-mode bosonic field. An ancillary qubit detuned with respect to the boson frequency is shown to reveal distinct spectral signatures depending on the type of vacua. In particular, the Lamb shift of the ancilla is sensitive to both ground state photon population and correlations. Back-action of the ancilla on the cavity ground state is investigated, taking into account the dissipation via a consistent master equation for the ultrastrong coupling regime. The conditions for high-fidelity measurements are determined.
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- This paper contributes to the Trapped-Ion Quantum Computing research area in the Quantum Articles archive.
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- We investigate theoretically how the spectroscopy of an ancillary qubit can probe cavity (circuit) QED ground states containing photons.
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