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arxiv: 0808.0743 · v3 · pith:J6VJGZVPnew · submitted 2008-08-05 · 🪐 quant-ph

Kerr nonlinearities and nonclassical states with superconducting qubits and nanomechanical resonators

classification 🪐 quant-ph
keywords resonatorskerrnanomechanicalstatesnonlinearitiessuperconductingachievedapplication
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We propose the use of a superconducting charge qubit capacitively coupled to two resonant nanomechanical resonators to generate Yurke-Stoler states, i.e. quantum superpositions of pairs of distinguishable coherent states 180$^\circ$ out of phase with each other. This is achieved by effectively implementing Kerr nonlinearities induced through application of a strong external driving field in one of the resonators. A simple study of the effect of dissipation on our scheme is also presented, and lower bounds of fidelity and purity of the generated state are calculated. Our procedure to implement a Kerr nonlinearity in this system may be used for high precision measurements in nanomechanical resonators.

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