Photon-assisted tunneling in a biased strongly correlated Bose gas |
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Authors: | Ma Ruichao Tai M Eric Preiss Philipp M Bakr Waseem S Simon Jonathan Greiner Markus |
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Affiliation: | Department of Physics, Harvard University, Cambridge, Massachusetts 02138, USA. |
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Abstract: | We study the impact of coherently generated lattice photons on an atomic Mott insulator subjected to a uniform force. Analogous to an array of tunnel-coupled and biased quantum dots, we observe sharp, interaction-shifted photon-assisted tunneling resonances corresponding to tunneling one and two lattice sites either with or against the force and resolve multiorbital shifts of these resonances. By driving a Landau-Zener sweep across such a resonance, we realize a quantum phase transition between a paramagnet and an antiferromagnet and observe quench dynamics when the system is tuned to the critical point. Direct extensions will produce gauge fields and site-resolved spin flips, for topological physics and quantum computing. |
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