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Microwave-driven logic is a promising alternative to laser control in scaling trapped-ion based quantum processors.
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2021
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R. Srinivas, S. C. Burd, H. M. Knaack, R. T. Sutherland, A. Kwiatkowski, S. Glancy, E. Knill, D. J. Wineland, D. Leibfried, A. C. Wilson, D. T. C. Allcock, and D. H. Slichter, High-fidelity laser-free universal control of trapped ion qubits, Nature 597
2021
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S. C. Burd, R. Srinivas, H. M. Knaack, W. Ge, A. C. Wilson, D. J. Wineland, D. Leibfried, J. J. Bollinger, D. T. Allcock, and D. H. Slichter, Quantum amplification of boson-mediated interactions, Nat. Phys 17
2021
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D. P. Nadlinger, P. Drmota, B. C. Nichol, G. Araneda, D. Main, R. Srinivas, D. M. Lucas, C. J. Ballance, K. Ivanov, E. Y.-Z. Tan, P. Sekatski, R. L. Urbanke, R. Renner, N. Sangouard, and J.-D. Bancal, Experimental quantum key distribution certified by bell’s theorem, Nature 607
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2016
Cited alongside, same era.
T. P. Harty, M. A. Sepiol, D. T. C. Allcock, C. J. Ballance, J. E. Tarlton, and D. M. Lucas, High-fidelity trapped-ion quantum logic using near-field microwaves, Phys. Rev. Lett. 117
2016
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S. Weidt, J. Randall, S. C. Webster, K. Lake, A. E. Webb, I. Cohen, T. Navickas, B. Lekitsch, A. Retzker, and W. K. Hensinger, Trapped-ion quantum logic with global radiation fields, Phys. Rev. Lett. 117
2016
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V. M. Schäfer, C. J. Ballance, K. Thirumalai, L. J. Stephenson, T. G. Ballance, A. M. Steane, and D. M. Lucas, Fast quantum logic gates with trapped-ion qubits, Nature 555
2018
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S. M. Brewer, J.-S. Chen, A. M. Hankin, E. R. Clements, C. W. Chou, D. J. Wineland, D. B. Hume, and D. R. Leibrandt, a 27 l + {}^{27}al^{+} quantum-logic clock with a systematic uncertainty below 10 − 18 {10}^{-18} , Phys. Rev. Lett. 123
2019
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E. Oelker, R. B. Hutson, C. J. Kennedy, L. Sonderhouse, T. Bothwell, A. Goban, D. Kedar, C. Sanner, J. M. Robinson, G. E. Marti, D. G. Matei, T. Legero, M. Giunta, R. Holzwarth, F. Riehle, U. Sterr, and J. Ye, Demonstration of 4.8 × 10 − 17 \times 10^{-17} stability at 1s for two independent optical clocks, Nat. Photonics 13
2019
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R. T. Sutherland, R. Srinivas, S. C. Burd, D. Leibfried, A. C. Wilson, D. J. Wineland, D. T. C. Allcock, D. H. Slichter, and S. B. Libby, Versatile laser-free trapped-ion entangling gates, New J. Phys. 21
2019
Cited alongside, same era.
R. Srinivas, S. C. Burd, R. T. Sutherland, A. C. Wilson, D. J. Wineland, D. Leibfried, D. T. C. Allcock, and D. H. Slichter, Trapped-ion spin-motion coupling with microwaves and a near-motional oscillating magnetic field gradient, Phys. Rev. Lett. 122
2019
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2022
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M. Duwe, G. Zarantonello, N. Pulido-Mateo, H. Mendpara, L. Krinner, A. Bautista-Salvador, N. V. Vitanov, K. Hammerer, R. F. Werner, and C. Ospelkaus, Numerical optimization of amplitude-modulated pulses in microwave-driven entanglement generation, Quantum Science and Technology 7
2022
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M. A. Weber, High-fidelity, near-field microwave gates in a cryogenic surface trap , D.Phil. thesis, University of Oxford (2022)
2022
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R. T. Sutherland, Q. Yu, K. M. Beck, and H. Häffner, One- and two-qubit gate infidelities due to motional errors in trapped ions and electrons, Phys. Rev. A 105
2022
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L. Gerster, F. Martínez-García, P. Hrmo, M. W. van Mourik, B. Wilhelm, D. Vodola, M. Müller, R. Blatt, P. Schindler, and T. Monz, Experimental bayesian calibration of trapped-ion entangling operations, PRX Quantum 3
2022
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A. D. Leu, M. F. Gely, M. A. Weber, M. C. Smith, D. P. Nadlinger, and D. M. Lucas, Fast, high-fidelity addressed single-qubit gates using efficient composite pulse sequences, Phys. Rev. Lett. 131
2023
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I. D. Moore, W. C. Campbell, E. R. Hudson, M. J. Boguslawski, D. J. Wineland, and D. T. C. Allcock, Photon scattering errors during stimulated raman transitions in trapped-ion qubits, Phys. Rev. A 107
2023
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M. A. Weber, C. Löschnauer, J. Wolf, M. F. Gely, R. K. Hanley, J. F. Goodwin, C. J. Ballance, T. P. Harty, and D. M. Lucas, Cryogenic ion trap system for high-fidelity near-field microwave-driven quantum logic, Quantum Science and Technology 9
2023
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2023
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2024
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2024
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