Publication | Open Access
Robust state preparation in quantum simulations of Dirac dynamics
29
Citations
25
References
2017
Year
Quantum DynamicQuantum ScienceEngineeringQuantum ComputingPhysicsRobust State PreparationQuantum SimulationQuantum Simulation ProtocolsDirac OperatorInverse ProblemsElectric FieldQuantum SystemQuantum ChaosQuantum DecoherenceQuantum Engineering
A nonrelativistic system such as an ultracold trapped ion may perform a quantum simulation of a Dirac equation dynamics under specific conditions. The resulting Hamiltonian and dynamics are highly controllable, but the coupling between momentum and internal levels poses some difficulties to manipulate the internal states accurately in wave packets. We use invariants of motion to inverse engineer robust population inversion processes with a homogeneous, time-dependent simulated electric field. This exemplifies the usefulness of inverse-engineering techniques to improve the performance of quantum simulation protocols.
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