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Selection rules in a strongly coupled qubit-resonator system

Authors :
Niemczyk, T.
Deppe, F.
Menzel, E. P.
Schwarz, M. J.
Huebl, H.
Hocke, F.
Häberlein, M.
Danner, M.
Hoffmann, E.
Baust, A.
Solano, E.
Garcia-Ripoll, J. J.
Marx, A.
Gross, R.
Publication Year :
2011

Abstract

Superconducting qubits acting as artificial two-level atoms allow for controlled variation of the symmetry properties which govern the selection rules for single and multiphoton excitation. We spectroscopically analyze a superconducting qubit-resonator system in the strong coupling regime under one- and two-photon driving. Our results provide clear experimental evidence for the controlled transition from an operating point governed by dipolar selection rules to a regime where one- and two-photon excitations of the artificial atom coexist. We find that the vacuum coupling between qubit and resonator can be straightforwardly extracted from the two-photon spectra where the detuned two-photon drive does not populate the relevant resonator mode significantly.<br />Comment: 8 pages, 5 figures

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1107.0810
Document Type :
Working Paper