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Individual optical addressing in chains of trapped atomic ions requires generation of many small, closely spaced beams with low cross-talk.
Optical Waveguide Theory (Boston, MA, 1984)
Snyder, A. W. & Love, J. D · 1984
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Quantum Computations with Cold Trapped Ions
Cirac, J. I. & Zoller, P · 1995
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Experimental issues in coherent quantum-state manipulation of trapped atomic ions
Wineland, D. et al · 1998
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Ion strings for quantum gates
Nägerl, H., Bechter, W., Eschner, J., Schmidt-Kaler, F. & Blatt, R · 1998
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Individual addressing and state readout of trapped ions utilizing rf micromotion
Leibfried, D · 1999
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Arbitrarily accurate composite pulse sequences
Brown, K. R., Harrow, A. W. & Chuang, I. L · 2004
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Individual addressing of ions using magnetic field gradients in a surface-electrode ion trap
Wang, S. X., Labaziewicz, J., Ge, Y., Shewmon, R. & Chuang, I. L · 2009
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Large-scale quantum computation in an anharmonic linear ion trap
Lin, G.-D. et al · 2009
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Robust Dynamical Decoupling for Quantum Computing and Quantum Memory
Souza, A. M., Álvarez, G. A. & Suter, D · 2011
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Individual-Ion Addressing with Microwave Field Gradients
Warring, U. et al · 2013
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A compact UHV package for microfabricated ion-trap arrays with direct electronic air-side access
Wilpers, G., See, P., Gill, P. & Sinclair, A. G · 2013
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High-Fidelity Preparation, Gates, Memory, and Readout of a Trapped-Ion Quantum Bit
Harty, T. et al · 2014
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Individual addressing of trapped Yb + 171 {}^{171}\mathrm{Yb}^{+} ion qubits using a microelectromechanical systems-based beam steering system
Crain, S., Mount, E., Baek, S. & Kim, J · 2014
Cited alongside, same era.
Robust calibration of a universal single-qubit gate set via robust phase estimation
Kimmel, S., Low, G. H. & Yoder, T. J · 2015
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.
Silicon microfabricated linear segmented ion traps for quantum technologies
Choonee, K., Wilpers, G. & Sinclair, A. G · 2017
Cited alongside, same era.
Experimental Demonstration of a Cheap and Accurate Phase Estimation
Rudinger, K., Kimmel, S., Lobser, D. & Maunz, P · 2017
Cited alongside, same era.
Compact Ion-Trap Quantum Computing Demonstrator
Pogorelov, I. et al · 2021
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SCALING QUANTUM COMPUTERS WITH LONG CHAINS OF TRAPPED IONS
Egan, L. N · 2021
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Tunable transverse spin–motion coupling for quantum information processing
West, A. D., Putnam, R., Campbell, W. C. & Hamilton, P · 2021
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High Fidelity State Preparation and Measurement of Ion Hyperfine Qubits with I > 1 / 2 {I}>1/2
An, F. A. et al · 2022
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Laser-Written Waveguide Array Optimized for Individual Control of Trapped Ion Qubits in a Chain
Timpu, F. et al · 2022
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On-chip beam rotators, adiabatic mode converters, and waveplates through low-loss waveguides with variable cross-sections
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Seck, C. M. et al · 2020
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High-Fidelity Two-Qubit Gates Using a Microelectromechanical-System-Based Beam Steering System for Individual Qubit Addressing
Wang, Y. et al · 2020
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Branching fractions for P 3 / 2 \mathrm{P}_{3/2} decays in Ba + \mathrm{Ba}^{+}
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Sun, B. et al · 2022
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Control of Transverse Motion for Quantum Gates on Individually Addressed Atomic Qubits
Cetina, M. et al · 2022
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Optical Crosstalk Mitigation for Individual Addressing in a Cryogenic Ion Trap
Flannery, J. et al · 2022
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Fast, high-fidelity addressed single-qubit gates using efficient composite pulse sequences (2023)
Leu, A. D. et al · 2023
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Coherent Control of Trapped-Ion Qubits with Localized Electric Fields
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