Papers › Unifying Floquet theory of longitudinal and dispersive readout
Unifying Floquet theory of longitudinal and dispersive readout
Alessandro Chessari, Esteban A. Rodríguez-Mena, José Carlos Abadillo-Uriel, Victor Champain, Simon Zihlmann, Romain Maurand, Yann-Michel Niquet, Michele Filippone
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We devise a Floquet theory of longitudinal and dispersive readout in circuit QED. By studying qubits coupled to cavity photons and driven at the resonance frequency of the cavity ωᵣ, we establish a universal connection between the qubit AC Stark shift and the longitudinal and dispersive coupling to photons. We find that the longitudinal coupling g_∥ is controlled by the slope of the AC Stark shift as function of the driving strength A_q, while the dispersive shift χ depends on its curvature. The two quantities become proportional to each other in the weak drive limit (A_q→0). Our approach unifies the adiabatic limit (ωᵣ→0) -- where g_∥ is generated by the static spectrum curvature (or quantum capacitance) -- with the diabatic one, where the static spectrum plays no role. We derive analytical results supported by exact numerical simulations. We apply them to superconducting and spin-hybrid cQED systems, showcasing the flexibility of faster-than-dispersive longitudinal readout.
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