A 4 K cryogenic tweezers system with dual-wavelength trapping produces defect-free arrays of 1024 atoms and 5000 s lifetimes for Rydberg quantum computing.
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A 114-atom Rydberg kagome array is adiabatically driven into a disordered, correlated state whose spin correlations resemble a U(1) Dirac spin liquid ansatz.
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Defect-free arrays at the thousand-atom scale in a 4-K cryogenic environment
A 4 K cryogenic tweezers system with dual-wavelength trapping produces defect-free arrays of 1024 atoms and 5000 s lifetimes for Rydberg quantum computing.
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Dirac Spin Liquid Candidate in a Rydberg Quantum Simulator
A 114-atom Rydberg kagome array is adiabatically driven into a disordered, correlated state whose spin correlations resemble a U(1) Dirac spin liquid ansatz.