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Control and Tomography of a Three Level Superconducting Artificial Atom

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arxiv 1004.5504 v1 pith:6P2LBPFE submitted 2010-04-30 quant-ph

Control and Tomography of a Three Level Superconducting Artificial Atom

classification quant-ph
keywords statescontroldemonstrateexcitedlevelpopulationsqutritsuperconducting
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A number of superconducting qubits, such as the transmon or the phase qubit, have an energy level structure with small anharmonicity. This allows for convenient access of higher excited states with similar frequencies. However, special care has to be taken to avoid unwanted higher-level populations when using short control pulses. Here we demonstrate the preparation of arbitrary three-level superposition states using optimal control techniques in a transmon. Performing dispersive read-out we extract the populations of all three levels of the qutrit and study the coherence of its excited states. Finally we demonstrate full quantum state tomography of the prepared qutrit states and evaluate the fidelities of a set of states, finding on average 96%.

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