Optimal Control of Effective Hamiltonians
arXiv:1401.7446 · doi:10.1103/PhysRevLett.113.010501
Abstract
We present a systematic scheme for optimization of quantum simulations. Specifically, we show how polychromatic driving can be used to significantly improve the driving of Raman transitions in the Lambda system, which opens new possibilities for controlled driven-induced effective dynamics.
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Cited by in corpus (13)
- Speeding up adiabatic quantum state transfer by using dressed states
- Fast adiabatic evolution by oscillating initial Hamiltonians
- Quasi-periodically driven quantum systems
- High fidelity quantum gates of trapped ions mediated by a dissipative bus mode
- Shortcuts to adiabaticity in the presence of a continuum: applications to itinerant quantum state transfer
- Tunable Chern insulator with shaken optical lattices
- Quantum control by effective counterdiabatic driving
- Optimal control theory with arbitrary superpositions of waveforms
- Structure-dynamics relation in shaken optical lattices
- Quantum optimal control within the rotating wave approximation
- Quantum control without quantum states
- Synthetic fractional flux quanta in a ring of superconducting qubits
- Effective Hamiltonians for almost-periodically driven quantum systems