4.6 Article

Relaxation and readout visibility of a singlet-triplet qubit in an Overhauser field gradient

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PHYSICAL REVIEW B
卷 85, 期 3, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.85.035306

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  1. IARPA/MQCO
  2. DARPA/QUEST
  3. National Science Foundation [ECS-0335765]

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Using single-shot charge detection in a GaAs double quantum dot, we investigate spin relaxation time (T-1) and readout visibility of a two-electron singlet-triplet qubit following single-electron dynamic nuclear polarization (DNP). For magnetic fields up to 2 T, the DNP cycle is in all cases found to increase Overhauser field gradients, which in turn decrease T1 and, consequently, reduce readout visibility. This effect was previously attributed to a suppression of singlet-triplet dephasing under a similar DNP cycle. A model describing relaxation after singlet-triplet mixing agrees well with experiment. Effects of pulse bandwidth on visibility are also investigated.

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