Non-symmetric bilayer atomic arrays suppress diffraction losses via destructive interference for higher quantum interface efficiencies and introduce a collective dark-state memory whose light coupling is tuned by interlayer spacing.
Logical quantum processor based on reconfigurable atom arrays.Nature, 626(7997):58–65, 2024
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Non-symmetric quantum interfaces with bilayer atomic arrays
Non-symmetric bilayer atomic arrays suppress diffraction losses via destructive interference for higher quantum interface efficiencies and introduce a collective dark-state memory whose light coupling is tuned by interlayer spacing.