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We report on the trapping of single Rb atoms in tunable arrays of optical tweezers in a cryogenic environment at $\sim 4$ K.
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2008
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C. Tuchendler, A.M. Lance, A. Browaeys, Y.R.P. Sortais, and P. Grangier, Energy distribution and cooling of a single atom in an optical tweezer , Phys. Rev. A 78
2008
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S. Haroche, Nobel Lecture: Controlling photons in a box and exploring the quantum to classical boundary , Rev. Mod. Phys. 85
2013
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2013
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L. Béguin, Measurement of the van der Waals interaction between two Rydberg atoms , PhD thesis, Institut d’Optique Graduate School (2013)
2013
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2013
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J.D. Pritchard, J.A. Isaacs, M.A. Beck, R. McDermott, and M. Saffman, Hybrid atom-photon quantum gate in a superconducting microwave resonator , Phys. Rev. A 89
2014
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F. Nogrette, H. Labuhn, S. Ravets, D. Barredo, L. Béguin, A. Vernier, T. Lahaye, and A. Browaeys, Single-Atom Trapping in Holographic 2D Arrays of Microtraps with Arbitrary Geometries , Phys. Rev. X 4
2014
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B.J. Lester, N. Luick, A.M. Kaufman, C.M. Reynolds, and C.A. Regal, Rapid Production of Uniformly Filled Arrays of Neutral Atoms , Phys. Rev. Lett. 115
2015
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M. Saffman, Quantum computing with atomic qubits and Rydberg interactions: Progress and challenges J. Phys. B 49
2016
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E.A. Goldschmidt, T. Boulier, R.C. Brown, S.B. Koller, J.T. Young, A.V. Gorshkov, S.L. Rolston, and J.V. Porto, Anomalous Broadening in Driven Dissipative Rydberg Systems Phys. Rev. Lett. 116
2016
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J. Zeiher, R. van Bijnen, P. Schauß, S. Hild, J.-Y. Choi, T. Pohl, I. Bloch, and C. Gross, Many-body interferometry of a Rydberg-dressed spin lattice , Nature Phys. 12
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2019
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M.O. Brown, T. Thiele, C. Kiehl, T.-W. Hsu, and C.A. Regal, Gray-Molasses Optical-Tweezer Loading: Controlling Collisions for Scaling Atom-Array Assembly , Phys. Rev. X 9
2019
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A. Browaeys and T. Lahaye, Many-body physics with individually controlled Rydberg atoms , Nature Phys. 16
2020
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L. Henriet, L. Béguin, A. Signoles, T. Lahaye, A. Browaeys, G.-O. Reymond, and C. Jurczak, Quantum computing with neutral atoms , Quantum 4
2020
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K.-N. Schymik, V. Lienhard, D. Barredo, P. Scholl, H. Williams, A. Browaeys, and T. Lahaye, Enhanced atom-by-atom assembly of arbitrary tweezers arrays , Phys. Rev. A 102
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2016
Cited alongside, same era.
T. L. Nguyen, J.M. Raimond, C. Sayrin, R. Cortiñas, T. Cantat-Moltrecht, F. Assemat, I. Dotsenko, S. Gleyzes, S. Haroche, G. Roux, T. Jolicoeur, and M. Brune, Towards Quantum Simulation with Circular Rydberg Atoms , Phys. Rev. X 8
2018
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G. Pagano, P.W. Hess, H.B. Kaplan, W.L. Tan, P. Richerme, P. Becker, A. Kyprianidis, J. Zhang, E. Birckelbaw, M.R. Hernandez, Y. Wu, and C. Monroe, Cryogenic Trapped-Ion System for Large Scale Quantum Simulation , Quantum Sci. Tech. 4
2018
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I.S. Madjarov, A. Cooper, A.L. Shaw, J.P. Covey, V. Schkolnik, T.H. Yoon, J.R. Williams, and M. Endres, An Atomic-Array Optical Clock with Single-Atom Readout Phys. Rev. X 9
2019
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M.A. Norcia, A.W. Young, W.J. Eckner, E. Oelker, J. Ye, and A.M. Kaufman, Seconds-Scale Coherence on an Optical Clock Transition in a Tweezer Array , Science 366
2019
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If the single-atom lifetime is τ \tau , the lifetime of an N N -atom configuration is τ / N \tau/N . As the rearrangement time scales roughly linearly with N N , an improvement by a factor α \alpha of τ \tau results in an increase of the maximal atom number that one can rearrange during the lifetime of a configuration by only α \sqrt{\alpha}
Cited in the paper.
I. I. Beterov, I. I. Ryabtsev, D. B. Tretyakov, and V. M. Entin, Quasiclassical calculations of blackbody-radiation-induced depopulation rates and effective lifetimes of Rydberg n S nS , n P nP , and n D nD alkali-metal atoms with n ≤ 80 n\leq 80 , Phys. Rev. A 79
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2020
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D. Barredo, V. Lienhard, P. Scholl, S. de Léséleuc, T. Boulier, A. Browaeys, and T. Lahaye, Three-Dimensional Trapping of Individual Rydberg Atoms in Ponderomotive Bottle Beam Traps , Phys. Rev. Lett. 124
2020
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Yu. Alexeev, D. Bacon, K.R. Brown, R. Calderbank, L.D. Carr, F.T. Chong, B. DeMarco, D. Englund, E. Farhi, B. Fefferman, et al. , Quantum Computer Systems for Scientific Discovery , PRX Quantum 2
2021
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P. Scholl, M. Schuler, H.J. Williams, A.A. Eberharter, D. Barredo, K.-N. Schymik, V. Lienhard, L.-P. Henry, T.C. Lang, T. Lahaye, A.M. Läuchli, and A. Browaeys, Quantum simulation of 2D antiferromagnets with hundreds of Rydberg atoms , Nature 595
2021
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S. Ebadi, T.T. Wang, H. Levine, A. Keesling, G. Semeghini, A. Omran, D. Bluvstein, R. Samajdar, H. Pichler, W.W. Ho, S. Choi, S. Sachdev, M. Greiner, V. Vuletic, and M.D. Lukin, Quantum Phases of Matter on a 256-Atom Programmable Quantum Simulator , Nature 595
2021
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