Journal of Applied Physics · 2009 · 14 citations · 27 references
Quantum ScienceJosephson JunctionsElectrical EngineeringJosephson Charge QubitsQuantum ComputingPhysicsEngineeringNatural SciencesQuantum DeviceQuantum Optimization AlgorithmQuantum FeedbackComputer EngineeringMagnetic FluxQuantum EntanglementQubit RealizationsMicroelectronicsQuantum Error CorrectionJosephson Charge Qubit
Typical for qubit realizations are two performance-limiting shortcomings: the physical system is not a perfect two-level system and it couples to an environment. In this work we investigate the limits of performance of the Josephson charge qubit due to the interplay of leakage into unwanted states and dissipative effects due to environmental noise within optimal control theory. For the example of the Hadamard transformation, we show that external control field-gate bias and magnetic flux, which perform the operation for the ideal qubit perfectly, show different robustness regarding leakage into unwanted states and against dissipation. Proper selection of the temporal evolution of gate bias and magnetic flux leads to performance improvements of typically 20% regarding dissipative effects with a predicted optimal fidelity of typically 98%, presuming perfect initial-state preparation and switching times of the order of 500 ps.
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Savitzky-Golay Smoothing Filters
William H. Press, Saul A. Teukolsky · Computers in Physics · 1990 · 11.6K citations · Full text
Charge-insensitive qubit design derived from the Cooper pair box
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Quantum-state engineering with Josephson-junction devices
Yuriy Makhlin, Gerd Schön, Alexander Shnirman · Reviews of Modern Physics · 2001 · 2.5K citations · Full text
Coherent control of macroscopic quantum states in a single-Cooper-pair box