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Minimizing and understanding errors is critical for quantum science, both in noisy intermediate scale quantum (NISQ) devices and for the quest towards fault-tolerant quantum computation.
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Ytterbium nuclear-spin qubits in an optical tweezer array
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Trapped-ion quantum computing: Progress and challenges
C. D. Bruzewicz, J. Chiaverini, R. McConnell, and J. M. Sage, · 2019
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Generation and manipulation of schrödinger cat states in rydberg atom arrays
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Nature 574
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2000-times repeated imaging of strontium atoms in clock-magic tweezer arrays
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A. Jenkins, J. W. Lis, A. Senoo, W. F. McGrew, and A. M. Kaufman, · 2022
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Controlling rydberg excitations using ion-core transitions in alkaline-earth atom-tweezer arrays
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S. Ebadi, A. Keesling, M. Cain, T. T. Wang, H. Levine, D. Bluvstein, G. Semeghini, A. Omran, J.-G. Liu, R. Samajdar, X.-Z. Luo, B. Nash, X. Gao, B. Barak, E. Farhi, S. Sachdev, N. Gemelke, L. Zhou, S. Choi, H. Pichler, S.-T. Wang, M. Greiner, V. Vuletić, and M. D. Lukin, · 2022
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S. J. Garratt, Z. Weinstein, and E. Altman, · 2022
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High threshold codes for neutral atom qubits with biased erasure errors
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