Publication | Open Access
Temperature Dependence of Coherent Oscillations in Josephson Phase Qubits
54
Citations
11
References
2007
Year
Thermal FluctuationsEngineeringJosephson JunctionsQuantum ComputingSuperconductivityUltracold AtomCoherence TimesQuantum EntanglementSuperconducting DevicesJosephson Phase QubitsQuantum SciencePhysicsBose-einstein CondensationQuantum DecoherenceRabi OscillationNatural SciencesApplied PhysicsCondensed Matter PhysicsCoherent ProcessQuantum Superconductivity
We experimentally investigate the temperature dependence of Rabi oscillations and Ramsey fringes in superconducting phase qubits. In a wide range of temperatures, we find that both the decay time and the amplitude of these coherent oscillations remain nearly unaffected by thermal fluctuations. In the two-level limit, coherent qubit response rapidly vanishes as soon as the energy of thermal fluctuations k(B)T becomes larger than the energy level spacing variant Planck's over h omega of the qubit. In contrast, a sample of much shorter coherence times displayed semiclassical oscillations very similar to Rabi oscillation, but showing a qualitatively different temperature dependence. Our observations shed new light on the origin of decoherence in superconducting qubits. The experimental data suggest that, without degrading already achieved coherence times, phase qubits can be operated at temperatures much higher than those reported till now.
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