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Quantum Simulation
Probing Polariton Dynamics in Trapped Ions with Phase-Coherent Two-Dimensional Spectroscopy
arXiv
Authors: Manuel Gessner, Frank Schlawin, Andreas Buchleitner
Year
2015
Paper ID
27356
Status
Preprint
Abstract Read
~2 min
Abstract Words
111
Citations
N/A
Abstract
We devise a phase-coherent three-pulse protocol to probe the polariton dynamics in a trapped-ion quantum simulation. In contrast to conventional nonlinear signals, the presented scheme does not change the number of excitations in the system, allowing for the investigation of the dynamics within an N-excitation manifold. In the particular case of a filling factor one (N excitations in an N-ion chain), the proposed interaction induces coherent transitions between a delocalized phonon superfluid and a localized atomic insulator phase. Numerical simulations of a two-ion chain demonstrate that the resulting two-dimensional spectra allow for the unambiguous identification of the distinct phases, and the two-dimensional lineshapes efficiently characterize the relevant decoherence mechanism.
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- This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
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- We devise a phase-coherent three-pulse protocol to probe the polariton dynamics in a trapped-ion quantum simulation.
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