Composite pulses for robust universal control of singlet-triplet qubits
arXiv:1202.5032 · doi:10.1038/ncomms2003
Abstract
Precise qubit manipulation is fundamental to quantum computing, yet experimental systems generally have stray coupling between the qubit and the environment, which hinders the necessary high-precision control. We report here the first theoretical progress in correcting an important class of errors stemming from fluctuations in the magnetic field gradient, in the context of the singlet-triplet spin qubit in a semiconductor double quantum dot. These errors are not amenable to correction via control techniques developed in other contexts, since here the experimenter has precise control only over the rotation rate about the z-axis of the Bloch sphere, and this rate is furthermore restricted to be positive and bounded. Despite these strong constraints, we construct simple electrical pulse sequences that, for small gradients, carry out z-axis rotations while canceling errors up to the sixth order in gradient fluctuations, and for large gradients, carry out arbitrary rotations while canceling the leading order error.
8 pages, 4 figures + supplementary materials
References in corpus (12)
- Driven coherent oscillations of a single electron spin in a quantum dot
- Electrically driven single electron spin resonance in a slanting Zeeman field
- How to Enhance Dephasing Time in Superconducting Qubits
- Universal quantum control of two-electron spin quantum bits using dynamic nuclear polarization
- Enhancing the Coherence of a Spin Qubit by Operating it as a Feedback Loop That Controls its Nuclear Spin Bath
- Coherent spin manipulation in an exchange-only qubit
- Electron Spin Dephasing due to Hyperfine Interactions with a Nuclear Spin Bath
- Electron spin decoherence in isotope-enriched silicon
- Universal set of quantum gates for double-dot spin qubits with fixed interdot coupling
- Measurement of Temporal Correlations of the Overhauser Field in a Double Quantum Dot
- Dynamical Quantum Error Correction of Unitary Operations with Bounded Controls
- Concatenated dynamical decoupling in a solid-state spin bath
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