Publication | Open Access
Hybrid Quantum-Classical Approach to Quantum Optimal Control
268
Citations
34
References
2017
Year
Classical ControlQuantum ScienceEngineeringQuantum ComputingPhysicsQuantum Optimization AlgorithmNatural SciencesQuantum FeedbackQuantum SimulationQuantum AlgorithmComputer ScienceQuantum SimulatorQuantum SystemQuantum EntanglementOptimal Control SolutionQuantum Optimal ControlQuantum Algorithms
A central challenge in quantum computing is to identify more computational problems for which utilization of quantum resources can offer significant speedup. Here, we propose a hybrid quantum-classical scheme to tackle the quantum optimal control problem. We show that the most computationally demanding part of gradient-based algorithms, namely, computing the fitness function and its gradient for a control input, can be accomplished by the process of evolution and measurement on a quantum simulator. By posing queries to and receiving answers from the quantum simulator, classical computing devices update the control parameters until an optimal control solution is found. To demonstrate the quantum-classical scheme in experiment, we use a seven-qubit nuclear magnetic resonance system, on which we have succeeded in optimizing state preparation without involving classical computation of the large Hilbert space evolution.
| Year | Citations | |
|---|---|---|
Page 1
Page 1