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Suppressing errors is the central challenge for useful quantum computing, requiring quantum error correction for large-scale processing.
Broadband, Narrowband, and Passband Composite Pulses for Use in Advanced NMR Experiments
Wimperis, S · 1994
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Scheme for reducing decoherence in quantum computer memory
Shor, P. W · 1995
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Fault-tolerant quantum computation
Shor, P. W · 1996
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Multiple-particle interference and quantum error correction
Steane, A · 1996
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Active stabilization, quantum computation, and quantum state synthesis
Steane, A. M · 1997
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Stabilizer Codes and Quantum Error Correction (1997)
Gottesman, D · 1997
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Fast quantum gates for neutral atoms
Jaksch, D. et al · 2000
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Topological quantum memory
Dennis, E., Kitaev, A., Landahl, A. & Preskill, J · 2002
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Tackling systematic errors in quantum logic gates with composite rotations
Cummins, H. K., Llewellyn, G. & Jones, J. A · 2003
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Improved simulation of stabilizer circuits
Aaronson, S. & Gottesman, D · 2004
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Fault-tolerant quantum speedup from constant depth quantum circuits
Mezher, R., Ghalbouni, J., Dgheim, J. & Markham, D · 2005
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Quantum computing with realistically noisy devices
Knill, E · 2005
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Entanglement detection in the stabilizer formalism
Tóth, G. & Gühne, O · 2005
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Two-dimensional transport and transfer of a single atomic qubit in optical tweezers
Beugnon, J. et al · 2007
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Fast scramblers
Sekino, Y. & Susskind, L · 2008
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Restrictions on transversal encoded quantum gate sets
Eastin, B. & Knill, E · 2009
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Temporally unstructured quantum computation
Shepherd, D. & Bremner, M. J · 2009
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Direct fidelity estimation from few Pauli measurements
Flammia, S. T. & Liu, Y. K · 2011
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Fault-tolerant quantum computing with color codes (2011)
Landahl, A. J., Anderson, J. T. & Rice, P. R · 2011
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14-qubit entanglement: Creation and coherence
Monz, T. et al · 2011
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Classical simulation of commuting quantum computations implies collapse of the polynomial hierarchy
Bremner, M. J., Jozsa, R. & Shepherd, D. J · 2011
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Measuring Entanglement Growth in Quench Dynamics of Bosons in an Optical Lattice
Daley, A. J., Pichler, H., Schachenmayer, J. & Zoller, P · 2012
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Surface codes: Towards practical large-scale quantum computation
Fowler, A. G., Mariantoni, M., Martinis, J. M. & Cleland, A. N · 2012
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Surface code quantum computing by lattice surgery
Horsman, C., Fowler, A. G., Devitt, S. & Meter, R. V · 2012
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Dynamical polarizability of atoms in arbitrary light fields: General theory and application to cesium
Le Kien, F., Schneeweiss, P. & Rauschenbeutel, A · 2013
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Gauge color codes: optimal transversal gates and gauge fixing in topological stabilizer codes
Bombín, H · 2015
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Unfolding the color code
Kubica, A., Yoshida, B. & Pastawski, F · 2015
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Universal transversal gates with color codes: A simplified approach
Kubica, A. & Beverland, M. E · 2015
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The smallest interesting colour code (2016)
Campbell, E. T · 2016
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Average-Case Complexity Versus Approximate Simulation of Commuting Quantum Computations
Bremner, M. J., Montanaro, A. & Shepherd, D. J · 2016
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Minimizing resource overheads for fault-tolerant preparation of encoded states of the Steane code
Goto, H · 2016
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An atom-by-atom assembler of defect-free arbitrary two-dimensional atomic arrays
Barredo, D., De Léséleuc, S., Lienhard, V., Lahaye, T. & Browaeys, A · 2016
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Quantum thermalization through entanglement in an isolated many-body system
Kaufman, A. M. et al · 2016
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Eliminating light shifts for single atom trapping
Hutzler, N. R., Liu, L. R., Yu, Y. & Ni, K. K · 2017
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Fault-tolerant quantum error detection
Linke, N. M. et al · 2017
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Achieving quantum supremacy with sparse and noisy commuting quantum computations
Bremner, M. J., Montanaro, A. & Shepherd, D. J · 2017
Cited alongside, same era.
A Small Quantum Computer is Needed to Optimize Fault-Tolerant Protocols
Iyer, P. & Poulin, D · 2017
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Quantum Computing in the NISQ era and beyond
Preskill, J · 2018
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Computer Organization and Design: The Hardware Software Interface - RISC-V Edition (2018)
Patterson, D. A. & Hennessy, J. L · 2018
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Correcting coherent errors with surface codes
Bravyi, S., Englbrecht, M., König, R. & Peard, N · 2018
Cited alongside, same era.
Anticoncentration theorems for schemes showing a quantum speedup
Hangleiter, D., Bermejo-Vega, J., Schwarz, M. & Eisert, J · 2018
Cited alongside, same era.
Multi-qubit entanglement and algorithms on a neutral-atom quantum computer
Graham, T. M. et al · 2022
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Hardware-Efficient, Fault-Tolerant Quantum Computation with Rydberg Atoms
Cong, I. et al · 2022
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Demonstration of fault-tolerant universal quantum gate operations
Postler, L. et al · 2022
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Erasure conversion for fault-tolerant quantum computing in alkaline earth Rydberg atom arrays
Wu, Y., Kolkowitz, S., Puri, S. & Thompson, J. D · 2022
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Litinski, D. & Nickerson, N · 2022
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Characterizing quantum supremacy in near-term devices
Boixo, S. et al · 2018
Cited alongside, same era.
Quantum supremacy using a programmable superconducting processor
Arute, F. et al · 2019
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Simulation of quantum circuits by low-rank stabilizer decompositions
Bravyi, S. et al · 2019
Cited alongside, same era.
Parallel Implementation of High-Fidelity Multiqubit Gates with Neutral Atoms
Levine, H. et al · 2019
Cited alongside, same era.
On the complexity and verification of quantum random circuit sampling
Bouland, A., Fefferman, B., Nirkhe, C. & Vazirani, U · 2019
Cited alongside, same era.
Probing Rényi entanglement entropy via randomized measurements
Brydges, T. et al · 2019
Cited alongside, same era.
Dispersive optics for scalable Raman driving of hyperfine qubits
Levine, H. et al · 2022
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Time-Optimal Two- And Three-Qubit Gates for Rydberg Atoms
Jandura, S. & Pupillo, G · 2022
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Assembly and coherent control of a register of nuclear spin qubits
Barnes, K. et al · 2022
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Opportunities and Challenges in Fault-Tolerant Quantum Computation (2022)
Gottesman, D · 2022
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Realizing repeated quantum error correction in a distance-three surface code
Krinner, S. et al · 2022
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Simulation of Quantum Circuits Using the Big-Batch Tensor Network Method
Pan, F. & Zhang, P · 2022
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Quantum computational advantage with a programmable photonic processor
Madsen, L. S. et al · 2022
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Suppressing quantum errors by scaling a surface code logical qubit
Quantum, G · 2023
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High-fidelity parallel entangling gates on a neutral-atom quantum computer
Evered, S. J. et al · 2023
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Mid-circuit correction of correlated phase errors using an array of spectator qubits
Singh, K. et al · 2023
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Mid-circuit measurements on a neutral atom quantum processor (2023)
Graham, T. M. et al · 2023
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High-fidelity gates and mid-circuit erasure conversion in an atomic qubit
Ma, S. et al · 2023
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Mid-circuit operations using the omg-architecture in neutral atom arrays (2023)
Lis, J. W. et al · 2023
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Mid-circuit qubit measurement and rearrangement in a 171 Yb atomic array (2023)
Norcia, M. A. et al · 2023
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Onset of Scrambling as a Dynamical Transition in Tunable-Range Quantum Circuits
Kuriyattil, S., Hashizume, T., Bentsen, G. & Daley, A. J · 2023
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Non-Abelian braiding of graph vertices in a superconducting processor
Andersen, T. I. et al · 2023
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Erasure conversion in a high-fidelity Rydberg quantum simulator
Scholl, P. et al · 2023
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Robust sparse IQP sampling in constant depth (2023)
Paletta, L., Leverrier, A., Sarlette, A., Mirrahimi, M. & Vuillot, C · 2023
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Bell sampling from quantum circuits (2023)
Hangleiter, D. & Gullans, M. J · 2023
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Scalable Measures of Magic Resource for Quantum Computers
Haug, T. & Kim, M. S · 2023
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Evidence for the utility of quantum computing before fault tolerance
Kim, Y. et al · 2023
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High-threshold and low-overhead fault-tolerant quantum memory (2023)
Bravyi, S. et al · 2023
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High-fidelity detection of large-scale atom arrays in an optical lattice (2023)
Tao, R., Ammenwerth, M., Gyger, F., Bloch, I. & Zeiher, J · 2023
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Improved Decoding of Circuit Noise and Fragile Boundaries of Tailored Surface Codes
Higgott, O., Bohdanowicz, T. C., Kubica, A., Flammia, S. T. & Campbell, E. T · 2023
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Spacetime codes of Clifford circuits (2023)
Delfosse, N. & Paetznick, A · 2023
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Relaxing Hardware Requirements for Surface Code Circuits using Time-dynamics (2023)
McEwen, M., Bacon, D. & Gidney, C · 2023
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Gurobi Optimizer Reference Manual (2023)
Gurobi Optimization, L · 2023
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Correlated decoding of logical qubit algorithms with transversal gates, in preparation (2023)
Cain, M. et al · 2023
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Quantum Advantage of Logical Qubits in Random Transversal Circuit Sampling, in preparation (2023)
Kalinowski, M. et al · 2023
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Phase transition in Random Circuit Sampling (2023)
Morvan, A. et al · 2023
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