Dissipation-assisted stabilization of Floquet-Laughlin states at half filling in the bosonic Harper-Hofstadter-Hubbard model via quantum bath engineering, demonstrated numerically for 2-6 particles.
Hacohen-Gourgy, V
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Sublattice bias in the checkerboard Bose-Hubbard model makes the commensurate superfluid phase experimentally accessible via transmon arrays and supplies new probes for superfluid and insulating phases.
citing papers explorer
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Dissipation-assisted preparation of Floquet-Laughlin states in superconducting circuits
Dissipation-assisted stabilization of Floquet-Laughlin states at half filling in the bosonic Harper-Hofstadter-Hubbard model via quantum bath engineering, demonstrated numerically for 2-6 particles.
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Checkerboard Bose Hubbard Ladders using Transmon Arrays
Sublattice bias in the checkerboard Bose-Hubbard model makes the commensurate superfluid phase experimentally accessible via transmon arrays and supplies new probes for superfluid and insulating phases.