Publication | Open Access
Momentum-resolved and correlation spectroscopy using quantum probes
27
Citations
62
References
2017
Year
Quantum Lattice SystemMany-body Lattice ModelsEngineeringMany-body Quantum PhysicQuantum SensingQuantum ProbesQuantum ComputingQuantum SimulationQuantum MaterialsQuantum EntanglementQuantum MatterBiophysicsQuantum SciencePhysicsEntangled ProbesQuantum Field TheoryAtomic PhysicsQuantum ChemistryNatural SciencesSpectroscopyApplied Physics
We address some key conditions under which many-body lattice models, intended mainly as simulated condensed-matter systems, can be investigated via immersed, fully controllable quantum objects, namely quantum probes. First, we present a protocol that, for a certain class of many-body systems, allows for full momentum-resolved spectroscopy using one single probe. Furthermore, we demonstrate how one can extract the two-point correlations using two entangled probes. We apply our theoretical proposal to two well-known exactly solvable lattice models, a one-dimensional (1D) Kitaev chain and 2D superfluid Bose-Hubbard model, and show its accuracy as well as its robustness against external noise.
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