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Quantum Simulation
Observing dynamical currents in a non-Hermitian momentum lattice
arXiv
Authors: Rodrigo Rosa-Medina, Francesco Ferri, Fabian Finger, Nishant Dogra, Katrin Kroeger, Rui Lin, R. Chitra, Tobias Donner, Tilman Esslinger
Year
2021
Paper ID
62053
Status
Preprint
Abstract Read
~2 min
Abstract Words
134
Citations
N/A
Abstract
We report on the experimental realization and detection of dynamical currents in a spin-textured lattice in momentum space. Collective tunneling is implemented via cavity-assisted Raman scattering of photons by a spinor Bose-Einstein condensate into an optical cavity. The photon field inducing the tunneling processes is subject to cavity dissipation, resulting in effective directional dynamics in a non-Hermitian setting. We observe that the individual tunneling events are superradiant in nature and locally resolve them in the lattice by performing real-time, frequency-resolved measurements of the leaking cavity field. The results can be extended to a regime exhibiting a cascade of currents and simultaneous coherences between multiple lattice sites, where numerical simulations provide further understanding of the dynamics. Our observations showcase dynamical tunneling in momentum-space lattices and provide prospects to realize dynamical gauge fields in driven-dissipative settings.
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- This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
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- We report on the experimental realization and detection of dynamical currents in a spin-textured lattice in momentum space.
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