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The generation of long-lived entanglement on an optical clock transition is a key requirement to unlocking the promise of quantum metrology.
Squeezed spin states
Kitagawa, M. & Ueda, M · 1993
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Squeezed atomic states and projection noise in spectroscopy
Wineland, D. J., Bollinger, J. J., Itano, W. M. & Heinzen, D · 1994
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Experimental entanglement of four particles
Sackett, C. A., Kielpinski, D., King, B. E., Langer, C., Meyer, V., Myatt, C. J., Rowe, M., Turchette, Q., Itano, W. M., Wineland, D. J. et al · 2000
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Experimental demonstration of entanglement-enhanced rotation angle estimation using trapped ions
Meyer, V., Rowe, M., Kielpinski, D., Sackett, C., Itano, W. M., Monroe, C. & Wineland, D. J · 2001
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Experimental demonstration of a robust, high-fidelity geometric two ion-qubit phase gate
Leibfried, D., DeMarco, B., Meyer, V., Lucas, D., Barrett, M., Britton, J., Itano, W. M., Jelenković, B., Langer, C., Rosenband, T. et al · 2003
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Squeezing and entanglement in a Bose–Einstein condensate
Esteve, J., Gross, C., Weller, A., Giovanazzi, S. & Oberthaler, M · 2008
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High-fidelity entanglement of 43
Kirchmair, G., Benhelm, J., Zähringer, F., Gerritsma, R., Roos, C. & Blatt, R · 2009
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Measurement-based quantum computation
Briegel, H. J., Browne, D. E., Dür, W., Raussendorf, R. & Van den Nest, M · 2009
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Implementation of cavity squeezing of a collective atomic spin
Leroux, I. D., Schleier-Smith, M. H. & Vuletić, V · 2010
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Entanglement of two individual neutral atoms using Rydberg blockade
Wilk, T., Gaëtan, A., Evellin, C., Wolters, J., Miroshnychenko, Y., Grangier, P. & Browaeys, A · 2010
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Demonstration of a neutral atom controlled-NOT quantum gate
Isenhower, L., Urban, E., Zhang, X., Gill, A., Henage, T., Johnson, T. A., Walker, T. & Saffman, M · 2010
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Frequency Comparison of Two High-Accuracy ${\mathrm{Al}}^{+}$ Optical Clocks
Chou, C. W., Hume, D. B., Koelemeij, J. C. J., Wineland, D. J. & Rosenband, T · 2010
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A 750-mW, continuous-wave, solid-state laser source at 313 nm for cooling and manipulating trapped 9 Be + ions
Wilson, A. C., Ospelkaus, C., VanDevender, A., Mlynek, J. A., Brown, K. R., Leibfried, D. & Wineland, D. J · 2011
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Spin Squeezing in a Rydberg Lattice Clock
Gil, L., Mukherjee, R., Bridge, E., Jones, M. & Pohl, T · 2014
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Fisher information and entanglement of non-Gaussian spin states
Strobel, H., Muessel, W., Linnemann, D., Zibold, T., Hume, D. B., Pezzè, L., Smerzi, A. & Oberthaler, M. K · 2014
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Quantum metrology from a quantum information science perspective
Tóth, G. & Apellaniz, I · 2014
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Quantum error correction for metrology
Kessler, E. M., Lovchinsky, I., Sushkov, A. O. & Lukin, M. D · 2014
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Heisenberg-limited atom clocks based on entangled qubits
Kessler, E. M., Komar, P., Bishof, M., Jiang, L., Sørensen, A. S., Ye, J. & Lukin, M. D · 2014
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Optical atomic clocks
Ludlow, A. D., Boyd, M. M., Ye, J., Peik, E. & Schmidt, P · 2015
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Cryogenic optical lattice clocks
Ushijima, I., Takamoto, M., Das, M., Ohkubo, T. & Katori, H · 2015
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Single-ion atomic clock with 3 × \times 10 -18
Huntemann, N., Sanner, C., Lipphardt, B., Tamm, C. & Peik, E · 2016
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Gravitational wave detection with optical lattice atomic clocks
Kolkowitz, S., Pikovski, I., Langellier, N., Lukin, M. D., Walsworth, R. L. & Ye, J · 2016
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Many-body interferometry of a Rydberg-dressed spin lattice
Zeiher, J., Van Bijnen, R., Schauß, P., Hild, S., Choi, J.-y., Pohl, T., Bloch, I. & Gross, C · 2016
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Deterministic squeezed states with collective measurements and feedback
Cox, K. C., Greve, G. P., Weiner, J. M. & Thompson, J. K · 2016
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Engineering spin-squeezed states for quantum-enhanced atom interferometry
Engelsen, N. J., Hosten, O., Krishnakumar, R. & Kasevich, M. A · 2016
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Tunable two-dimensional arrays of single Rydberg atoms for realizing quantum Ising models
Labuhn, H., Barredo, D., Ravets, S., De Léséleuc, S., Macrì, T., Lahaye, T. & Browaeys, A · 2016
Cited alongside, same era.
High-fidelity quantum logic gates using trapped-ion hyperfine qubits
Ballance, C., Harty, T., Linke, N., Sepiol, M. & Lucas, D · 2016
Cited alongside, same era.
High-fidelity universal gate set for 9 Be + ion qubits
Gaebler, J. P., Tan, T. R., Lin, Y., Wan, Y., Bowler, R., Keith, A. C., Glancy, S., Coakley, K., Knill, E., Leibfried, D. et al · 2016
Cited alongside, same era.
Large energy superpositions via Rydberg dressing
Khazali, M., Lau, H. W., Humeniuk, A. & Simon, C · 2016
Cited alongside, same era.
Approaching the Heisenberg limit without single-particle detection
Davis, E., Bentsen, G. & Schleier-Smith, M · 2016
Cited alongside, same era.
Quantum phase magnification
Hosten, O., Krishnakumar, R., Engelsen, N. J. & Kasevich, M. A · 2016
Seconds-scale coherence on an optical clock transition in a tweezer array
Norcia, M. A., Young, A. W., Eckner, W. J., Oelker, E., Ye, J. & Kaufman, A. M · 2019
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An Atomic-Array Optical Clock with Single-Atom Readout
Madjarov, I. S., Cooper, A., Shaw, A. L., Covey, J. P., Schkolnik, V., Yoon, T. H., Williams, J. R. & Endres, M · 2019
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Parallel implementation of high-fidelity multiqubit gates with neutral atoms
Levine, H., Keesling, A., Semeghini, G., Omran, A., Wang, T. T., Ebadi, S., Bernien, H., Greiner, M., Vuletić, V., Pichler, H. et al · 2019
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Rydberg-mediated entanglement in a two-dimensional neutral atom qubit array
Graham, T., Kwon, M., Grinkemeyer, B., Marra, Z., Jiang, X., Lichtman, M., Sun, Y., Ebert, M. & Saffman, M · 2019
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Test of general relativity by a pair of transportable optical lattice clocks
Takamoto, M., Ushijima, I., Ohmae, N., Yahagi, T., Kokado, K., Shinkai, H. & Katori, H · 2020
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Cited alongside, same era.
Atom interferometry with the Sr optical clock transition
Hu, L., Poli, N., Salvi, L. & Tino, G. M · 2017
Cited alongside, same era.
Atomic clock performance enabling geodesy below the centimetre level
McGrew, W., Zhang, X., Fasano, R., Schäffer, S., Beloy, K., Nicolodi, D., Brown, R., Hinkley, N., Milani, G., Schioppo, M. et al · 2018
Cited alongside, same era.
Imaging Optical Frequencies with 100 μ \mu Hz Precision and 1.1 μ \mu m Resolution
Marti, G. E., Hutson, R. B., Goban, A., Campbell, S. L., Poli, N. & Ye, J · 2018
Cited alongside, same era.
Towards an optical clock for space: Compact, high-performance optical lattice clock based on bosonic atoms
Origlia, S., Pramod, M. S., Schiller, S., Singh, Y., Bongs, K., Schwarz, R., Al-Masoudi, A., Dörscher, S., Herbers, S., Häfner, S., Sterr, U. & Lisdat, C · 2018
Cited alongside, same era.
Atomic clocks for geodesy
Mehlstäubler, T. E., Grosche, G., Lisdat, C., Schmidt, P. O. & Denker, H · 2018
Cited alongside, same era.
Search for new physics with atoms and molecules
Safronova, M., Budker, D., DeMille, D., Kimball, D. F. J., Derevianko, A. & Clark, C. W · 2018
Cited alongside, same era.
Huang, M.-Z., de la Paz, J. A., Mazzoni, T., Ott, K., Sinatra, A., Alzar, C. L. G. & Reichel, J · 2020
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Entanglement on an optical atomic-clock transition
Pedrozo-Peñafiel, E., Colombo, S., Shu, C., Adiyatullin, A. F., Li, Z., Mendez, E., Braverman, B., Kawasaki, A., Akamatsu, D., Xiao, Y. et al · 2020
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Heisenberg-limited noisy atomic clock using a hybrid coherent and squeezed state protocol
Pezzè, L. & Smerzi, A · 2020
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Half-minute-scale atomic coherence and high relative stability in a tweezer clock
Young, A. W., Eckner, W. J., Milner, W. R., Kedar, D., Norcia, M. A., Oelker, E., Schine, N., Ye, J. & Kaufman, A. M · 2020
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High-fidelity entanglement and detection of alkaline-earth Rydberg atoms
Madjarov, I. S., Covey, J. P., Shaw, A. L., Choi, J., Kale, A., Cooper, A., Pichler, H., Schkolnik, V., Williams, J. R. & Endres, M · 2020
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Robust Mølmer-Sørensen gate for neutral atoms using rapid adiabatic Rydberg dressing
Mitra, A., Martin, M. J., Biedermann, G. W., Marino, A. M., Poggi, P. M. & Deutsch, I. H · 2020
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Ramsey interferometry with generalized one-axis twisting echoes
Schulte, M., Martínez-Lahuerta, V. J., Scharnagl, M. S. & Hammerer, K · 2020
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A quantum enhanced search for dark matter axions
Backes, K., Palken, D., Al Kenany, S., Brubaker, B., Cahn, S., Droster, A., Hilton, G. C., Ghosh, S., Jackson, H., Lamoreaux, S. et al · 2021
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Frequency ratio measurements at 18-digit accuracy using an optical clock network
BACON Collaboration · 2021
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Optical frequency ratio of a 171
Dörscher, S., Huntemann, N., Schwarz, R., Lange, R., Benkler, E., Lipphardt, B., Sterr, U., Peik, E. & Lisdat, C · 2021
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Matter-wave Atomic Gradiometer Interferometric Sensor (MAGIS-100)
Abe, M., Adamson, P., Borcean, M., Bortoletto, D., Bridges, K., Carman, S. P., Chattopadhyay, S., Coleman, J., Curfman, N. M., DeRose, K. et al · 2021
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Compact Ion-Trap Quantum Computing Demonstrator
Pogorelov, I., Feldker, T., Marciniak, C. D., Postler, L., Jacob, G., Krieglsteiner, O., Podlesnic, V., Meth, M., Negnevitsky, V., Stadler, M. et al · 2021
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Quantum variational optimization of Ramsey interferometry and atomic clocks
Kaubruegger, R., Vasilyev, D. V., Schulte, M., Hammerer, K. & Zoller, P · 2021
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Practical limits of error correction for quantum metrology
Shettell, N., Munro, W. J., Markham, D. & Nemoto, K · 2021
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Optimal metrology with variational quantum circuits on trapped ions
Marciniak, C. D., Feldker, T., Pogorelov, I., Kaubruegger, R., Vasilyev, D. V., van Bijnen, R., Schindler, P., Zoller, P., Blatt, R. & Monz, T · 2021
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Quantum simulation of 2D antiferromagnets with hundreds of Rydberg atoms
Scholl, P., Schuler, M., Williams, H. J., Eberharter, A. A., Barredo, D., Schymik, K.-N., Lienhard, V., Henry, L.-P., Lang, T. C., Lahaye, T. et al · 2021
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Quantum phases of matter on a 256-atom programmable quantum simulator
Ebadi, S., Wang, T. T., Levine, H., Keesling, A., Semeghini, G., Omran, A., Bluvstein, D., Samajdar, R., Pichler, H., Ho, W. W. et al · 2021
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Time-Reversal-Based Quantum Metrology with Many-Body Entangled States
Colombo, S., Pedrozo-Peñafiel, E., Adiyatullin, A. F., Li, Z., Mendez, E., Shu, C. & Vuletic, V · 2021
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ARC 3.0: An expanded Python toolbox for atomic physics calculations
Robertson, E. J., Šibalić, N., Potvliege, R. M. & Jones, M. P · 2021
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