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Circuit quantum electrodynamics, where photons are coherently coupled to artificial atoms built with superconducting circuits, has enabled the investigation and control of macroscopic quantum-mechanical phenomena in superconductors.
1902
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1903
Earlier work this paper cites.
1908
Earlier work this paper cites.
1910
Earlier work this paper cites.
A. Y. Kitaev, Unpaired majorana fermions in quantum wires, Physics-Uspekhi 44
2001
Earlier work this paper cites.
A. Blais, R.-S. Huang, A. Wallraff, S. M. Girvin, and R. J. Schoelkopf, Cavity quantum electrodynamics for superconducting electrical circuits: An architecture for quantum computation, Phys. Rev. A 69
2004
Earlier work this paper cites.
I. Chiorescu, P. Bertet, K. Semba, Y. Nakamura, C. J. P. M. Harmans, and J. E. Mooij, Coherent dynamics of a flux qubit coupled to a harmonic oscillator, Nature 431
2004
Earlier work this paper cites.
A. Wallraff, D. I. Schuster, A. Blais, L. Frunzio, R.-S. Huang, J. Majer, S. Kumar, S. M. Girvin, and R. J. Schoelkopf, Strong coupling of a single photon to a superconducting qubit using circuit quantum electrodynamics, Nature 431
2004
Earlier work this paper cites.
G. Stan, S. B. Field, and J. M. Martinis, Critical field for complete vortex expulsion from narrow superconducting strips, Phys. Rev. Lett. 92
2004
Earlier work this paper cites.
V. E. Manucharyan, J. Koch, L. I. Glazman, and M. H. Devoret, Fluxonium: Single Cooper-pair circuit free of charge offsets, Science 326
2009
Earlier work this paper cites.
A. J. Annunziata, D. F. Santavicca, L. Frunzio, G. Catelani, M. J. Rooks, A. Frydman, and D. E. Prober, Tunable superconducting nanoinductors, Nanotechnology 21
2010
Earlier work this paper cites.
F. Hassler, A. R. Akhmerov, and C. W. J. Beenakker, The top-transmon: a hybrid superconducting qubit for parity-protected quantum computation, New Journal of Physics 13
2011
Earlier work this paper cites.
V. E. Manucharyan, Superinductance , Ph.D. thesis , Yale University (2012)
2012
Earlier work this paper cites.
O. V. Astafiev, L. B. Ioffe, S. Kafanov, Y. A. Pashkin, K. Y. Arutyunov, D. Shahar, O. Cohen, and J. S. Tsai, Coherent quantum phase slip, Nature 484
2012
Earlier work this paper cites.
T. Hyart, B. van Heck, I. C. Fulga, M. Burrello, A. R. Akhmerov, and C. W. J. Beenakker, Flux-controlled quantum computation with Majorana fermions, Phys. Rev. B 88
2013
Earlier work this paper cites.
D. Pekker, C.-Y. Hou, V. E. Manucharyan, and E. Demler, Proposal for coherent coupling of Majorana zero modes and superconducting qubits using the 4 π 4\pi Josephson effect, Phys. Rev. Lett. 111
2013
Earlier work this paper cites.
A. Zazunov, A. Brunetti, A. L. Yeyati, and R. Egger, Quasiparticle trapping, Andreev level population dynamics, and charge imbalance in superconducting weak links, Phys. Rev. B 90
2014
Earlier work this paper cites.
E. Ginossar and E. Grosfeld, Microwave transitions as a signature of coherent parity mixing effects in the Majorana-transmon qubit, Nature Communications 5
2014
Earlier work this paper cites.
T. Yokoyama, M. Eto, and Y. V. Nazarov, Anomalous Josephson effect induced by spin-orbit interaction and Zeeman effect in semiconductor nanowires, Phys. Rev. B 89
2014
Cited alongside, same era.
G. de Lange, B. van Heck, A. Bruno, D. J. van Woerkom, A. Geresdi, S. R. Plissard, E. P. A. M. Bakkers, A. R. Akhmerov, and L. DiCarlo, Realization of microwave quantum circuits using hybrid superconducting-semiconducting nanowire Josephson elements, Phys. Rev. Lett. 115
2015
Cited alongside, same era.
T. W. Larsen, K. D. Petersson, F. Kuemmeth, T. S. Jespersen, P. Krogstrup, J. Nygård, and C. M. Marcus, Semiconductor-nanowire-based superconducting qubit, Phys. Rev. Lett. 115
2015
Cited alongside, same era.
J. I. Väyrynen, G. Rastelli, W. Belzig, and L. I. Glazman, Microwave signatures of Majorana states in a topological Josephson junction, Phys. Rev. B 92
2015
Cited alongside, same era.
F. Luthi, T. Stavenga, O. W. Enzing, A. Bruno, C. Dickel, N. K. Langford, M. A. Rol, T. S. Jespersen, J. Nygård, P. Krogstrup, and L. DiCarlo, Evolution of nanowire transmon qubits and their coherence in a magnetic field, Phys. Rev. Lett. 120
2018
Later among the works it cites.
M. Hays, G. de Lange, K. Serniak, D. J. van Woerkom, D. Bouman, P. Krogstrup, J. Nygård, A. Geresdi, and M. H. Devoret, Direct microwave measurement of Andreev-bound-state dynamics in a semiconductor-nanowire Josephson junction, Phys. Rev. Lett. 121
2018
Later among the works it cites.
L. Casparis, M. R. Connolly, M. Kjaergaard, N. J. Pearson, A. Kringhøj, T. W. Larsen, F. Kuemmeth, T. Wang, C. Thomas, S. Gronin, G. C. Gardner, M. J. Manfra, C. M. Marcus, and K. D. Petersson, Superconducting gatemon qubit based on a proximitized two-dimensional electron gas, Nature Nanotechnology 13
2018
Later among the works it cites.
J. G. Kroll, W. Uilhoorn, K. L. van der Enden, D. de Jong, K. Watanabe, T. Taniguchi, S. Goswami, M. C. Cassidy, and L. P. Kouwenhoven, Magnetic field compatible circuit quantum electrodynamics with graphene Josephson junctions, Nature Communications 9
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S. D. Sarma, M. Freedman, and C. Nayak, Majorana zero modes and topological quantum computation, Npj Quantum Information 1
2015
Cited alongside, same era.
J. Paajaste, M. Amado, S. Roddaro, F. S. Bergeret, D. Ercolani, L. Sorba, and F. Giazotto, Pb/inas nanowire josephson junction with high critical current and magnetic flux focusing, Nano Letters 15
2015
Cited alongside, same era.
C. Janvier, L. Tosi, L. Bretheau, Ç. Ö. Girit, M. Stern, P. Bertet, P. Joyez, D. Vion, D. Esteve, M. F. Goffman, H. Pothier, and C. Urbina, Coherent manipulation of andreev states in superconducting atomic contacts, Science 349
2015
Cited alongside, same era.
P. Krogstrup, N. L. B. Ziino, W. Chang, S. M. Albrecht, M. H. Madsen, E. Johnson, J. Nygård, C. M. Marcus, and T. S. Jespersen, Epitaxy of semiconductor-superconductor nanowires, Nature Materials 14
2015
Cited alongside, same era.
F. Dolcini, M. Houzet, and J. S. Meyer, Topological Josephson ϕ 0 {\phi}_{0} junctions, Phys. Rev. B 92
2015
Cited alongside, same era.
H. Rotzinger, S. T. Skacel, M. Pfirrmann, J. N. Voss, J. Münzberg, S. Probst, P. Bushev, M. P. Weides, A. V. Ustinov, and J. E. Mooij, Aluminium-oxide wires for superconducting high kinetic inductance circuits, Superconductor Science and Technology 30
2016
Cited alongside, same era.
N. Samkharadze, A. Bruno, P. Scarlino, G. Zheng, D. P. DiVincenzo, L. DiCarlo, and L. M. K. Vandersypen, High-kinetic-inductance superconducting nanowire resonators for circuit QED in a magnetic field, Phys. Rev. Applied 5
2016
Cited alongside, same era.
W. C. Smith, A. Kou, U. Vool, I. M. Pop, L. Frunzio, R. J. Schoelkopf, and M. H. Devoret, Quantization of inductively shunted superconducting circuits, Phys. Rev. B 94
2016
Cited alongside, same era.
2018
Later among the works it cites.
R. M. Lutchyn, E. P. A. M. Bakkers, L. P. Kouwenhoven, P. Krogstrup, C. M. Marcus, and Y. Oreg, Majorana zero modes in superconductor-semiconductor heterostructures, Nature Reviews Materials 3
2018
Later among the works it cites.
L. Grünhaupt, N. Maleeva, S. T. Skacel, M. Calvo, F. Levy-Bertrand, A. V. Ustinov, H. Rotzinger, A. Monfardini, G. Catelani, and I. M. Pop, Loss mechanisms and quasiparticle dynamics in superconducting microwave resonators made of thin-film granular aluminum, Phys. Rev. Lett. 121
2018
Later among the works it cites.
N. Maleeva, L. Grünhaupt, T. Klein, F. Levy-Bertrand, O. Dupre, M. Calvo, F. Valenti, P. Winkel, F. Friedrich, W. Wernsdorfer, A. V. Ustinov, H. Rotzinger, A. Monfardini, M. V. Fistul, and I. M. Pop, Circuit quantum electrodynamics of granular aluminum resonators, Nature Communications 9
2018
Later among the works it cites.
Y. Huang, H. Pan, C.-X. Liu, J. D. Sau, T. D. Stanescu, and S. Das Sarma, Metamorphosis of andreev bound states into majorana bound states in pristine nanowires, Phys. Rev. B 98
2018
Later among the works it cites.
S. Wu, V. Fatemi, Q. D. Gibson, K. Watanabe, T. Taniguchi, R. J. Cava, and P. Jarillo-Herrero, Observation of the quantum spin hall effect up to 100 kelvin in a monolayer crystal, Science 359
2018
Later among the works it cites.
J. I.-J. Wang, D. Rodan-Legrain, L. Bretheau, D. L. Campbell, B. Kannan, D. Kim, M. Kjaergaard, P. Krantz, G. O. Samach, F. Yan, J. L. Yoder, K. Watanabe, T. Taniguchi, T. P. Orlando, S. Gustavsson, P. Jarillo-Herrero, and W. D. Oliver, Coherent control of a hybrid superconducting circuit made with graphene-based van der waals heterostructures, Nature Nanotechnology 14
2019
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J. P. T. Stenger, M. Hatridge, S. M. Frolov, and D. Pekker, Braiding quantum circuit based on the 4 π 4\pi Josephson effect, Phys. Rev. B 99
2019
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S. Hart, Z. Cui, G. Ménard, M. Deng, A. E. Antipov, R. M. Lutchyn, P. Krogstrup, C. M. Marcus, and K. A. Moler, Current-phase relations of inas nanowire josephson junctions: From interacting to multimode regimes, Phys. Rev. B 100
2019
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L. Tosi, C. Metzger, M. F. Goffman, C. Urbina, H. Pothier, S. Park, A. L. Yeyati, J. Nygård, and P. Krogstrup, Spin-orbit splitting of Andreev states revealed by microwave spectroscopy, Phys. Rev. X 9
2019
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L. Grünhaupt, M. Spiecker, D. Gusenkova, N. Maleeva, S. T. Skacel, I. Takmakov, F. Valenti, P. Winkel, H. Rotzinger, W. Wernsdorfer, A. V. Ustinov, and I. M. Pop, Granular aluminium as a superconducting material for high-impedance quantum circuits, Nature Materials 18
2019
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T. M. Hazard, A. Gyenis, A. Di Paolo, A. T. Asfaw, S. A. Lyon, A. Blais, and A. A. Houck, Nanowire superinductance fluxonium qubit, Phys. Rev. Lett. 122
2019
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K. Kalashnikov, W. T. Hsieh, W. Zhang, W.-S. Lu, P. Kamenov, A. Di Paolo, A. Blais, M. E. Gershenson, and M. Bell, Bifluxon: Fluxon-parity-protected superconducting qubit, PRX Quantum 1
2020
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P. Winkel, K. Borisov, L. Grünhaupt, D. Rieger, M. Spiecker, F. Valenti, A. V. Ustinov, W. Wernsdorfer, and I. M. Pop, Implementation of a transmon qubit using superconducting granular aluminum, Phys. Rev. X 10
2020
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