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Quantum entanglement is a key resource for quantum computation and quantum communication \cite{Nielsen2010}.
Offset masks for lift-off photoprocessing
Dolan, G. J · 1977
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Bell’s theorem without inequalities
Greenberger, D. M., Horne, M. A., Shimony, A. & Zeilinger, A · 1990
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Quantum state transfer and entanglement distribution among distant nodes in a quantum network
Cirac, J. I., Zoller, P., Kimble, H. J., & Mabuchi, H · 1997
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Quantum networking with optical fibres
Pellizzari, T · 1997
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Demonstrating the viability of universal quantum computation using teleportation and single-qubit operations
Gottesman, D. & Chuang, I. L · 1999
Earlier work this paper cites.
Long-distance quantum communication with atomic ensembles and linear optics
Duan, L.-M., Lukin, M. D., Cirac, J. I. & Zoller, P · 2001
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Experimental long-lived entanglement of two macroscopic objects
Julsgaard, B., Kozhekin, A. & Polzik, E. S · 2001
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One-step synthesis of multiatom Greenberger-Horne-Zeilinger states
Zheng, S.-B · 2001
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Quantum logic gates for coupled superconducting phase qubits
Strauch, F. W. et al · 2003
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Quantum logic gates for coupled superconducting phase qubits
Strauch, F. W. et al · 2003
Earlier work this paper cites.
Measurement-induced entanglement for excitation stored in remote atomic ensembles
Chou, C.-W. et al · 2005
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Measurement of the entanglement of two superconducting qubits via state tomography
Steffen, M. et al · 2006
Earlier work this paper cites.
Distributed quantum computation based on small quantum registers
Jiang, L., Taylor, J. M., Sørensen, A. S. & Lukin, M. D · 2007
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Entanglement of single-atom quantum bits at a distance
Moehring, D. L. et al · 2007
Earlier work this paper cites.
Coherent quantum state storage and transfer between two phase qubits via a resonant cavity
Sillanpää, M. A., Park, J. I. & Simmonds, R. W · 2007
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Coupling superconducting qubits via a cavity bus
Majer, J. et al · 2007
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Charge-insensitive qubit design derived from the Cooper pair box
Koch, J. et al · 2007
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Process tomography of quantum memory in a Josephson-phase qubit coupled to a two-level state
Neeley, M. et al · 2008
Earlier work this paper cites.
Controlling the spontaneous emission of a superconducting transmon qubit
Houck, A. et al · 2008
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Randomized benchmarking of single-and multi-qubit control in liquid-state NMR quantum information processing
Ryan, C., Laforest, M. & Laflamme, R · 2009
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Quantum computation and quantum information (Cambridge University Press, 2010), 2 edn
Nielsen, M. A. & Chuang, I. L · 2010
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Generation of three-qubit entangled states using superconducting phase qubits
Neeley, M. et al · 2010
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Preparation and measurement of three-qubit entanglement in a superconducting circuit
DiCarlo, L. et al · 2010
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Separability criteria for genuine multiparticle entanglement
Gühne, O. & Seevinck, M · 2010
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Preparation and measurement of three-qubit entanglement in a superconducting circuit
DiCarlo, L. et al · 2010
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Quantum process tomography of two-qubit controlled-Z and controlled-NOT gates using superconducting phase qubits
Yamamoto, T. et al · 2010
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Entangling macroscopic diamonds at room temperature
Lee, K. C. et al · 2011
Earlier work this paper cites.
Flying microwave qubits with nearly perfect transfer efficiency
Korotkov, A. N · 2011
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Microwave engineering (Wiley, 2011), fourth edn
Pozar, D. M · 2011
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Observation of quantum jumps in a superconducting artificial atom
Vijay, R., Slichter, D. & Siddiqi, I · 2011
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Single-qubit-gate error below 𝟏𝟎 − 𝟒 {\mathbf{10}}^{-\mathbf{4}} in a trapped ion
Brown, K. R. et al · 2011
Earlier work this paper cites.
Using dark modes for high-fidelity optomechanical quantum state transfer
Wang, Y.-D. & Clerk, A. A · 2012
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An elementary quantum network of single atoms in optical cavities
Ritter, S. et al · 2012
Cited alongside, same era.
Planar superconducting resonators with internal quality factors above one million
Megrant, A. et al · 2012
Cited alongside, same era.
Multiplexed dispersive readout of superconducting phase qubits
Chen, Y. et al · 2012
Cited alongside, same era.
QuTiP: An open-source Python framework for the dynamics of open quantum systems
Johansson, J., Nation, P. & Nori, F · 2012
Cited alongside, same era.
Using dark modes for high-fidelity optomechanical quantum state transfer
Wang, Y.-D. & Clerk, A. A · 2012
Cited alongside, same era.
Nanomechanical coupling between microwave and optical photons
Bochmann, J., Vainsencher, A., Awschalom, D. D. & Cleland, A. N · 2013
Cited alongside, same era.
Quantum state transfer via noisy photonic and phononic waveguides
Vermersch, B., Guimond, P.-O., Pichler, H. & Zoller, P · 2017
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Characterization and reduction of capacitive loss induced by sub-micron Josephson junction fabrication in superconducting qubits
Dunsworth, A. et al · 2017
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Characterizing the attenuation of coaxial and rectangular microwave-frequency waveguides at cryogenic temperatures
Kurpiers, P., Walter, T., Magnard, P., Salathe, Y. & Wallraff, A · 2017
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Rapid high-fidelity single-shot dispersive readout of superconducting qubits
Walter, T. et al · 2017
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Deterministic quantum state transfer between remote qubits in cavities
Vogell, B., Vermersch, B., Northup, T., Lanyon, B. & Muschik, C · 2017
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Heralded entanglement between solid-state qubits separated by three metres
Bernien, H. et al · 2013
Cited alongside, same era.
Catch and release of microwave photon states
Yin, Y. et al · 2013
Cited alongside, same era.
Coherent Josephson qubit suitable for scalable quantum integrated circuits
Barends, R. et al · 2013
Cited alongside, same era.
Large-scale modular quantum-computer architecture with atomic memory and photonic interconnects
Monroe, C. et al · 2014
Cited alongside, same era.
Qubit architecture with high coherence and fast tunable coupling
Chen, Y. et al · 2014
Cited alongside, same era.
Observation of measurement-induced entanglement and quantum trajectories of remote superconducting qubits
Roch, N. et al · 2014
Cited alongside, same era.
10-qubit entanglement and parallel logic operations with a superconducting circuit
Song, C. et al · 2017
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Deterministic quantum state transfer and remote entanglement using microwave photons
Kurpiers, P. et al · 2018
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On-demand quantum state transfer and entanglement between remote microwave cavity memories
Axline, C. J. et al · 2018
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Deterministic remote entanglement of superconducting circuits through microwave two-photon transitions
Campagne-Ibarcq, P. et al · 2018
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Deterministic delivery of remote entanglement on a quantum network
Humphreys, P. C. et al · 2018
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Deterministic teleportation of a quantum gate between two logical qubits
Chou, K. S. et al · 2018
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Chip-to-chip entanglement of transmon qubits using engineered measurement fields
Dickel, C. et al · 2018
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A method for building low loss multi-layer wiring for superconducting microwave devices
Dunsworth, A. et al · 2018
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Tunable coupling scheme for implementing high-fidelity two-qubit gates
Yan, F. et al · 2018
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Quantum control of surface acoustic-wave phonons
Satzinger, K. J. et al · 2018
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Deterministic bidirectional communication and remote entanglement generation between superconducting qubits
Leung, N. et al · 2019
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Violating Bell’s inequality with remotely connected superconducting qubits
Zhong, Y. P. et al · 2019
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Phonon-mediated quantum state transfer and remote qubit entanglement
Bienfait, A. et al · 2019
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Quantum supremacy using a programmable superconducting processor
Arute, F. et al · 2019
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Quantum communication with time-bin encoded microwave photons
Kurpiers, P. et al · 2019
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Violating Bell’s inequality with remotely connected superconducting qubits
Zhong, Y. P. et al · 2019
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Phonon-mediated quantum state transfer and remote qubit entanglement
Bienfait, A. et al · 2019
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Quantum supremacy using a programmable superconducting processor
Arute, F. et al · 2019
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Solid-state qubits: 3D integration and packaging
Rosenberg, D. et al · 2020
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Magnard, P. et al · 2020
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Quantum transduction of optical photons from a superconducting qubit
Mirhosseini, M., Sipahigil, A., Kalaee, M. & Painter, O · 2020
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Remote entanglement via adiabatic passage using a tunably-dissipative quantum communication system
Chang, H.-S. et al · 2020
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Error-detected state transfer and entanglement in a superconducting quantum network
Burkhart, L. D. et al · 2020
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Supplementary Information for “Deterministic multi-qubit entanglement in a quantum network” (2020)
Zhong, Y. et al · 2020
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Error-detected state transfer and entanglement in a superconducting quantum network
Burkhart, L. D. et al · 2020
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High-fidelity, high-scalability two-qubit gate scheme for superconducting qubits
Xu, Y. et al · 2020
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