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Qubits based on ions trapped in linear radio-frequency traps form a successful platform for quantum computing, due to their high fidelity of operations, all-to-all connectivity and degree of local control.
Acceleration and trapping of particles by radiation pressure
A. Ashkin · 1970
Earlier work this paper cites.
Simulating physics with computers
Richard P. Feynman · 1982
Earlier work this paper cites.
Three-dimensional viscous confinement and cooling of atoms by resonance radiation pressure
Steven Chu, L. Hollberg, J. E. Bjorkholm, Alex Cable, and A. Ashkin · 1985
Earlier work this paper cites.
Semiclassical fourier transform for quantum computation
Robert B. Griffiths and Chi-Sheng Niu · 1996
Earlier work this paper cites.
Thermalization of trapped ions: A quantum perturbation approach
S. K. Lamoreaux · 1997
Earlier work this paper cites.
Resilient quantum computation
Emanuel Knill, Raymond Laflamme, and Wojciech H. Zurek · 1998
Earlier work this paper cites.
Experimental issues in coherent quantum-state manipulation of trapped atomic ions
D.J. Wineland, C. Monroe, W.M. Itano, D. Leibfried, B.E. King, and D.M. Meekhof · 1998
Earlier work this paper cites.
Cooling the collective motion of trapped ions to initialize a quantum register
B. E. King, C. S. Wood, C. J. Myatt, Q. A. Turchette, D. Leibfried, W. M. Itano, C. Monroe, and D. J. Wineland · 1998
Earlier work this paper cites.
Theory of heating of the quantum ground state of trapped ions
Daniel F. V. James · 1998
Earlier work this paper cites.
Quantum computation with ions in thermal motion
Anders Sørensen and Klaus Mølmer · 1999
Earlier work this paper cites.
Heating of trapped ions from the quantum ground state
Q. A. Turchette, Kielpinski, B. E. King, D. Leibfried, D. M. Meekhof, C. J. Myatt, M. A. Rowe, C. A. Sackett, C. S. Wood, W. M. Itano, C. Monroe, and D. J. Wineland · 2000
Earlier work this paper cites.
Optical dipole traps for neutral atoms
Rudolf Grimm, Matthias Weidemüller, and Yurii B. Ovchinnikov · 2000
Earlier work this paper cites.
Entanglement and quantum computation with ions in thermal motion
Anders Sørensen and Klaus Mølmer · 2000
Earlier work this paper cites.
Architecture for a large-scale ion-trap quantum computer
D. Kielpinski, C. Monroe, and D. J. Wineland · 2002
Earlier work this paper cites.
Fault-tolerant quantum computation by anyons
A.Yu. Kitaev · 2003
Earlier work this paper cites.
Effective quantum spin systems with trapped ions
D. Porras and J. I. Cirac · 2004
Earlier work this paper cites.
Optical control of single neutral atoms
Wolfgang Alt · 2004
Earlier work this paper cites.
Fault-tolerant quantum computation with constant error rate
Dorit Aharonov and Michael Ben-Or · 2008
Earlier work this paper cites.
Springer Berlin, Heidelberg, 2010
Quantum Quenching, Annealing and Computation · 2010
Earlier work this paper cites.
The trapped-ion qubit tool box
Roee Ozeri · 2011
Earlier work this paper cites.
Experimental repetitive quantum error correction
Philipp Schindler, Julio T. Barreiro, Thomas Monz, Volckmar Nebendahl, Daniel Nigg, Michael Chwalla, Markus Hennrich, and Rainer Blatt · 2011
Earlier work this paper cites.
Surface code quantum computing by lattice surgery
Dominic Horsman, Austin G Fowler, Simon Devitt, and Rodney Van Meter · 2012
Earlier work this paper cites.
Large-scale modular quantum-computer architecture with atomic memory and photonic interconnects
C. Monroe, R. Raussendorf, A. Ruthven, K. R. Brown, P. Maunz, L.-M. Duan, and J. Kim · 2014
Earlier work this paper cites.
Ion-trap measurements of electric-field noise near surfaces
M. Brownnutt, M. Kumph, P. Rabl, and R. Blatt · 2015
Earlier work this paper cites.
High-fidelity universal gate set for Be + 9 {{}^{9}\mathrm{Be}}^{+} ion qubits
J. P. Gaebler, T. R. Tan, Y. Lin, Y. Wan, R. Bowler, A. C. Keith, S. Glancy, K. Coakley, E. Knill, D. Leibfried, and D. J. Wineland · 2016
Earlier work this paper cites.
High-fidelity quantum logic gates using trapped-ion hyperfine qubits
C. J. Ballance, T. P. Harty, N. M. Linke, M. A. Sepiol, and D. M. Lucas · 2016
Earlier work this paper cites.
Digital-analog quantum simulation of spin models in trapped ions
Iñigo Arrazola, Julen S. Pedernales, Lucas Lamata, and Enrique Solano · 2016
Earlier work this paper cites.
Isospaced linear ion strings
Michael Johanning · 2016
Earlier work this paper cites.
High fidelity quantum gates of trapped ions in the presence of motional heating
Farhang Haddadfarshi and Florian Mintert · 2016
Earlier work this paper cites.
Eliminating light shifts for single atom trapping
Nicholas R Hutzler, Lee R Liu, Yichao Yu, and Kang-Kuen Ni · 2017
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Efficient raman sideband cooling of trapped ions to their motional ground state
H. Che, K. Deng, Z. T. Xu, W. H. Yuan, J. Zhang, and Z. H. Lu · 2017
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Quantum Computing in the NISQ era and beyond
John Preskill · 2018
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Robust entanglement gates for trapped-ion qubits
Yotam Shapira, Ravid Shaniv, Tom Manovitz, Nitzan Akerman, and Roee Ozeri · 2018
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Resilient entangling gates for trapped ions
A. E. Webb, S. C. Webster, S. Collingbourne, D. Bretaud, A. M. Lawrence, S. Weidt, F. Mintert, and W. K. Hensinger · 2018
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Robust 2-qubit gates in a linear ion crystal using a frequency-modulated driving force
Pak Hong Leung, Kevin A. Landsman, Caroline Figgatt, Norbert M. Linke, Christopher Monroe, and Kenneth R. Brown · 2018
Efficient stabilized two-qubit gates on a trapped-ion quantum computer
Reinhold Blümel, Nikodem Grzesiak, Nhung H. Nguyen, Alaina M. Green, Ming Li, Andrii Maksymov, Norbert M. Linke, and Yunseong Nam · 2021
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The Efficient Preparation of Normal Distributions in Quantum Registers
Arthur G. Rattew, Yue Sun, Pierre Minssen, and Marco Pistoia · 2021
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Realization of real-time fault-tolerant quantum error correction
C. Ryan-Anderson, J. G. Bohnet, K. Lee, D. Gresh, A. Hankin, J. P. Gaebler, D. Francois, A. Chernoguzov, D. Lucchetti, N. C. Brown, T. M. Gatterman, S. K. Halit, K. Gilmore, J. A. Gerber, B. Neyenhuis, D. Hayes, and R. P. Stutz · 2021
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Optimized pulsed sideband cooling and enhanced thermometry of trapped ions
A. J. Rasmusson, Marissa D’Onofrio, Yuanheng Xie, Jiafeng Cui, and Philip Richerme · 2021
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Experimental realization of a multiqubit quantum memory in a 218-ion chain
R. Yao, W. Q. Lian, Y. K. Wu, G. X. Wang, B. W. Li, Q. X. Mei, B. X. Qi, L. Yao, Z. C. Zhou, L. He, and L. M. Duan · 2022
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Repeated multi-qubit readout and feedback with a mixed-species trapped-ion register
V. Negnevitsky, M. Marinelli, K. K. Mehta, H.-Y. Lo, C. Flühmann, and J. P. Home · 2018
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Cryogenic trapped-ion system for large scale quantum simulation
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 · 2019
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Trapped-ion quantum computing: Progress and challenges
Colin D. Bruzewicz, John Chiaverini, Robert McConnell, and Jeremy M. Sage · 2019
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Self-verifying variational quantum simulation of lattice models
Christian Kokail, Christine Maier, Rick van Bijnen, Tiff Brydges, Manoj K Joshi, Petar Jurcevic, Christine A Muschik, Pietro Silvi, Rainer Blatt, Christian F Roos, et al · 2019
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Theory of robust multiqubit nonadiabatic gates for trapped ions
Yotam Shapira, Ravid Shaniv, Tom Manovitz, Nitzan Akerman, Lee Peleg, Lior Gazit, Roee Ozeri, and Ady Stern · 2020
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Scalable and Parallel Tweezer Gates for Quantum Computing with Long Ion Strings
Tobias Olsacher, Lukas Postler, Philipp Schindler, Thomas Monz, Peter Zoller, and Lukas M. Sieberer · 2020
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Controlling long ion strings for quantum simulation and precision measurements
Florian Kranzl, Manoj K. Joshi, Christine Maier, Tiff Brydges, Johannes Franke, Rainer Blatt, and Christian F. Roos · 2022
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Experimental quantum key distribution certified by bell’s theorem
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 · 2022
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Observing emergent hydrodynamics in a long-range quantum magnet
M. K. Joshi, F. Kranzl, A. Schuckert, I. Lovas, C. Maier, R. Blatt, M. Knap, and C. F. Roos · 2022
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Observing frustrated quantum magnetism in two-dimensional ion crystals
Mu Qiao, Zhengyang Cai, Ye Wang, Botao Du, Naijun Jin, Wentao Chen, Pengfei Wang, Chunyang Luan, Erfu Gao, Ximo Sun, Haonan Tian, Jingning Zhang, and Kihwan Kim · 2022
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Comparing two-qubit and multiqubit gates within the toric code
David Schwerdt, Yotam Shapira, Tom Manovitz, and Roee Ozeri · 2022
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Constant-cost implementations of clifford operations and multiply-controlled gates using global interactions
Sergey Bravyi, Dmitri Maslov, and Yunseong Nam · 2022
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Measurement as a shortcut to long-range entangled quantum matter
Tsung-Cheng Lu, Leonardo A. Lessa, Isaac H. Kim, and Timothy H. Hsieh · 2022
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Trapped-ion quantum computer with robust entangling gates and quantum coherent feedback
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S. A. Guo, Y. K. Wu, J. Ye, L. Zhang, W. Q. Lian, R. Yao, Y. Wang, R. Y. Yan, Y. J. Yi, Y. L. Xu, B. W. Li, Y. H. Hou, Y. Z. Xu, W. X. Guo, C. Zhang, B. X. Qi, Z. C. Zhou, L. He, and L. M. Duan · 2023
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