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A challenge for constructing large circuits of superconducting qubits is to balance addressability, coherence and coupling strength.
Chad Rigetti, Alexandre Blais, and Michel Devoret, “Protocol for universal gates in optimally biased superconducting qubits,” Phys. Rev. Lett. 94
2005
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P. Bertet, C. J. P. M. Harmans, and J. E. Mooij, “Parametric coupling for superconducting qubits,” Phys. Rev. B 73
2006
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Antti O. Niskanen, Yasunobu Nakamura, and Jaw-Shen Tsai, “Tunable coupling scheme for flux qubits at the optimal point,” Phys. Rev. B 73
2006
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M. Wallquist, V. S. Shumeiko, and G. Wendin, “Selective coupling of superconducting charge qubits mediated by a tunable stripline cavity,” Phys. Rev. B 74
2006
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Jens Koch, Terri M. Yu, Jay Gambetta, A. A. Houck, D. I. Schuster, J. Majer, Alexandre Blais, M. H. Devoret, S. M. Girvin, and R. J. Schoelkopf, “Charge-insensitive qubit design derived from the cooper pair box,” Phys. Rev. A 76
2007
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Alexandre Blais, Jay Gambetta, A. Wallraff, D. I. Schuster, S. M. Girvin, M. H. Devoret, and R. J. Schoelkopf, “Quantum-information processing with circuit quantum electrodynamics,” Phys. Rev. A 75
2007
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S. H. W. van der Ploeg, A. Izmalkov, Alec Maassen van den Brink, U. Hübner, M. Grajcar, E. Il’ichev, H.-G. Meyer, and A. M. Zagoskin, “Controllable coupling of superconducting flux qubits,” Phys. Rev. Lett. 98
2007
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J. Majer, J.M. Chow, J.M. Gambetta, Jens Koch, B.R. Johnson, J.A. Schreier, L.Frunzio, D.I. Schuster, A.A. Houck, A. Wallraff, A. Blais, M.H. Devoret, S.M. Girvin, and R.J. Schoelkopf, “Coupling superconducting qubits via a cavity bus,” Nature 449
2007
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Andrew J. Kerman and William D. Oliver, “High-fidelity quantum operations on superconducting qubits in the presence of noise,” Phys. Rev. Lett. 101
2008
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L. DiCarlo, J. M. Chow, J. M. Gambetta, Lev S. Bishop, B. R. Johnson, D. I. Schuster, J. Majer, A. Blais, L. Frunzio, S. M. Girvin, and R. J. Schoelkopf, “Demonstration of two-qubit algorithms with a superconducting quantum processor,” Nature 460
2009
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Ying-Dan Wang, A. Kemp, and K. Semba, “Coupling superconducting flux qubits at optimal point via dynamic decoupling with the quantum bus,” Phys. Rev. B 79
2009
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P. J. Leek, S. Filipp, P. Maurer, M. Baur, R. Bianchetti, J. M. Fink, M. Göppl, L. Steffen, and A. Wallraff, “Using sideband transitions for two-qubit operations in superconducting circuits,” Phys. Rev. B 79
2009
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K. Harrabi, F. Yoshihara, A. O. Niskanen, Y. Nakamura, and J. S. Tsai, “Engineered selection rules for tunable coupling in a superconducting quantum circuit,” Phys. Rev. B 79
2009
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R. C. Bialczak, M. Ansmann, M. Hofheinz, E. Lucero, M. Neeley, A. D. OConnell, D. Sank, H. Wang, J. Wenner, M. Steffen, A. N. Cleland, and J. M. Martinis, “Quantum process tomography of a universal entangling gate implemented with josephson phase qubits,” Nature Physics 6
2010
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Chad Rigetti and Michel Devoret, “Fully microwave-tunable universal gates in superconducting qubits with linear couplings and fixed transition frequencies,” Phys. Rev. B 81
2010
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Hanhee Paik, D. I. Schuster, Lev S. Bishop, G. Kirchmair, G. Catelani, A. P. Sears, B. R. Johnson, M. J. Reagor, L. Frunzio, L. I. Glazman, S. M. Girvin, M. H. Devoret, and R. J. Schoelkopf, “Observation of high coherence in josephson junction qubits measured in a three-dimensional circuit qed architecture,” Phys. Rev. Lett. 107
2011
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Jerry M. Chow, A. D. Córcoles, Jay M. Gambetta, Chad Rigetti, B. R. Johnson, John A. Smolin, J. R. Rozen, George A. Keefe, Mary B. Rothwell, Mark B. Ketchen, and M. Steffen, “Simple all-microwave entangling gate for fixed-frequency superconducting qubits,” Phys. Rev. Lett. 107
2011
Cited alongside, same era.
H. Wang, Matteo Mariantoni, Radoslaw C. Bialczak, M. Lenander, Erik Lucero, M. Neeley, A. D. O’Connell, D. Sank, M. Weides, J. Wenner, T. Yamamoto, Y. Yin, J. Zhao, John M. Martinis, and A. N. Cleland, “Deterministic entanglement of photons in two superconducting microwave resonators,” Phys. Rev. Lett. 106
2011
Cited alongside, same era.
S. J. Srinivasan, A. J. Hoffman, J. M. Gambetta, and A. A. Houck, “Tunable coupling in circuit quantum electrodynamics using a superconducting charge qubit with a v-shaped energy level diagram,” Phys. Rev. Lett. 106
2011
Cited alongside, same era.
Eva Zakka-Bajjani, François Nguyen, Minhyea Lee, Leila R. Vale, Raymond W. Simmonds, and José Aumentado, “Quantum superposition of a single microwave photon in two different ‘colour’ states,” Nature Physics 7
2014
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2015
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P.-M. Billangeon, J. S. Tsai, and Y. Nakamura, “Scalable architecture for quantum information processing with superconducting flux qubits based on purely longitudinal interactions,” Phys. Rev. B 92
2015
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Nicolas Didier, Jérôme Bourassa, and Alexandre Blais, “Fast quantum nondemolition readout by parametric modulation of longitudinal qubit-oscillator interaction,” Phys. Rev. Lett. 115
2015
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2011
Cited alongside, same era.
Easwar Magesan, J. M. Gambetta, and Joseph Emerson, “Scalable and robust randomized benchmarking of quantum processes,” Phys. Rev. Lett. 106
2011
Cited alongside, same era.
Austin G. Fowler, Matteo Mariantoni, John M. Martinis, and Andrew N. Cleland, “Surface codes: Towards practical large-scale quantum computation,” Phys. Rev. A 86
2012
Cited alongside, same era.
Chad Rigetti, Jay M. Gambetta, Stefano Poletto, B. L. T. Plourde, Jerry M. Chow, A. D. Córcoles, John A. Smolin, Seth T. Merkel, J. R. Rozen, George A. Keefe, Mary B. Rothwell, Mark B. Ketchen, and M. Steffen, “Superconducting qubit in a waveguide cavity with a coherence time approaching 0.1 ms,” Phys. Rev. B 86
2012
Cited alongside, same era.
S. Poletto, Jay M. Gambetta, Seth T. Merkel, John A. Smolin, Jerry M. Chow, A. D. Córcoles, George A. Keefe, Mary B. Rothwell, J. R. Rozen, D. W. Abraham, Chad Rigetti, and M. Steffen, “Entanglement of two superconducting qubits in a waveguide cavity via monochromatic two-photon excitation,” Phys. Rev. Lett. 109
2012
Cited alongside, same era.
A. Dewes, F. R. Ong, V. Schmitt, R. Lauro, N. Boulant, P. Bertet, D. Vion, and D. Esteve, “Characterization of a two-transmon processor with individual single-shot qubit readout,” Phys. Rev. Lett. 108
2012
Cited alongside, same era.
Easwar Magesan, Jay M. Gambetta, B. R. Johnson, Colm A. Ryan, Jerry M. Chow, Seth T. Merkel, Marcus P. da Silva, George A. Keefe, Mary B. Rothwell, Thomas A. Ohki, Mark B. Ketchen, and M. Steffen, “Efficient measurement of quantum gate error by interleaved randomized benchmarking,” Phys. Rev. Lett. 109
2012
Cited alongside, same era.
Andrew J Kerman, “Quantum information processing using quasiclassical electromagnetic interactions between qubits and electrical resonators,” New. J. Phys. 15
2013
Cited alongside, same era.
Jerry M Chow, Jay M Gambetta, Andrew W Cross, Seth T Merkel, Chad Rigetti, and M Steffen, “Microwave-activated conditional-phase gate for superconducting qubits,” New. J. Phys. 15
2013
Cited alongside, same era.
2015
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Christian Kraglund Andersen and Klaus Mølmer, “Multifrequency modes in superconducting resonators: Bridging frequency gaps in off-resonant couplings,” Phys. Rev. A 91
2015
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Eliot Kapit, “Universal two-qubit interactions, measurement, and cooling for quantum simulation and computing,” Phys. Rev. A 92
2015
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Joydip Ghosh and Austin G. Fowler, “Leakage-resilient approach to fault-tolerant quantum computing with superconducting elements,” Phys. Rev. A 91
2015
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David McKay, “Supplementary information,” (2015)
2015
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Joel Wallman, Chris Granade, Robin Harper, and Steven T Flammia, “Estimating the coherence of noise,” New. J. Phys. 17
2015
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Susanne Richer and David DiVincenzo, “Circuit design implementing longitudinal coupling: A scalable scheme for superconducting qubits,” Phys. Rev. B 93
2016
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Sarah Sheldon, Easwar Magesan, Jerry M. Chow, and Jay M. Gambetta, “Procedure for systematically tuning up cross-talk in the cross-resonance gate,” Phys. Rev. A 93
2016
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Easwar Magesan, “Private communication,” (2016)
2016
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2016
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“IBM Quantum Experience,” Online, http:/ibm.com (2016)
2016
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