Multiphoton antiresonance
arXiv:cond-mat/0410588 · doi:10.1103/PhysRevB.71.140508
Abstract
We show that nonlinear response of a quantum oscillator displays antiresonant dips and resonant peaks with varying frequency of the driving field. The effect is a consequence of special symmetry and is related to resonant multiphoton mixing of several pairs of oscillator states at a time. We discuss the possibility to observe the antiresonance and the associated multiphoton Rabi oscillations in Josephson junctions.
4 pages, 3 figures; corrected reference
References in corpus (5)
- An RF-Driven Josephson Bifurcation Amplifier for Quantum Measurements
- Noise-enabled precision measurements of a Duffing nanomechanical resonator
- Macroscopic quantum effects in a strongly driven nanomechanical resonator
- Decoherence in a Josephson junction qubit
- Quantum escape of the phase in a strongly driven Josephson junction
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