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- W5300633 abstract "We develop a theory of coherent quantum oscillations in two, in general interacting, qubits measured continuously by a mesoscopic detector with arbitrary nonlinearity and discuss an example of SQUID magnetometer that can operate as such a detector. Calculated spectra of the detector output show that the detector nonlinearity should lead to mixing of the oscillations of the two qubits. For noninteracting qubits oscillating with frequencies ${ensuremath{Omega}}_{1}$ and ${ensuremath{Omega}}_{2}$, the mixing manifests itself as spectral peaks at the combination frequencies ${ensuremath{Omega}}_{1}ifmmodepmelsetextpmfi{}{ensuremath{Omega}}_{2}$. Additional nonlinearity introduced by the qubit-qubit interaction shifts all the frequencies. In particular, for identical qubits, the interaction splits coherent superposition of the single-qubit peaks at ${ensuremath{Omega}}_{1}={ensuremath{Omega}}_{2}$. Quantum mechanics of the measurement imposes limitations on the height of the spectral peaks." @default.
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- W5300633 date "2005-02-28" @default.
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- W5300633 title "Continuous measurements of coherent quantum oscillations in two qubits" @default.
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- W5300633 doi "https://doi.org/10.1103/physrevb.71.085320" @default.
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