Focus Session: Superconducting Qubits: Multiple Qubits and Entanglement
FOCUS · P29 ·
Presentations
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Prospects for a prototype quantum processor based on three-dimensional superconducting cavities and qubits
COFFEE_KLATCH · Invited
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Authors
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Chad Rigetti
- IBM T. J. Watson Research Center
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Prime factoring using a Josephson phase-qubit architecture: $15 = 3*5$
ORAL
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Authors
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Erik Lucero
- University of California, Santa Barbara
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R. Barends
- University of California, Santa Barbara
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J. Bochmann
- University of California, Santa Barbara
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Y. Chen
- University of California, Santa Barbara
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B. Chiaro
- University of California, Santa Barbara
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J. Kelly
- University of California, Santa Barbara
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M. Lenander
- University of California, Santa Barbara
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M. Mariantoni
- University of California, Santa Barbara
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A. Megrant
- University of California, Santa Barbara
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C. Neill
- University of California, Santa Barbara
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P. O'Malley
- University of California, Santa Barbara
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P. Roushan
- University of California, Santa Barbara
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D. Sank
- University of California, Santa Barbara
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A. Vainsencher
- University of California, Santa Barbara
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H. Wang
- Zhejiang University
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J. Wenner
- University of California, Santa Barbara
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T. White
- University of California, Santa Barbara
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Y. Yin
- University of California, Santa Barbara
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A.N. Cleland
- University of California, Santa Barbara
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John M. Martinis
- University of California, Santa Barbara
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Building Transmon Qubits in the ReZQu Architecture
ORAL
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Authors
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Julian Kelly
- UC Santa Barbara
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R. Barends
- UC Santa Barbara
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J. Bochmann
- UC Santa Barbara
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B. Chiaro
- UC Santa Barbara
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Y. Chen
- UC Santa Barbara
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M. Lenander
- UC Santa Barbara
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E. Lucero
- UC Santa Barbara
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M. Mariantoni
- UC Santa Barbara
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A. Megrant
- UC Santa Barbara
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C. Neill
- UC Santa Barbara
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P. O'Malley
- UC Santa Barbara
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P. Roushan
- UC Santa Barbara
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D. Sank
- UC Santa Barbara
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A. Vainsencher
- UC Santa Barbara
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J. Wenner
- UC Santa Barbara
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T. White
- UC Santa Barbara
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Y. Yin
- UC Santa Barbara
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Andrew Cleland
- UC Santa Barbara
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John M. Martinis
- UC Santa Barbara
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High-fidelity CZ gate for the quantum Von Neumann architecture
ORAL
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Authors
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Joydip Ghosh
- University of Georgia, Athens
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Andrei Galiautdinov
- University of California, Riverside
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Alexander Korotkov
- University of California, Riverside
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Zhongyuan Zhou
- University of Georgia, Athens
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Michael Geller
- University of Georgia, Athens
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John Martinis
- University of California, Santa Barbara
- UCSB
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High-fidelity gates towards a scalable superconducting quantum processor
ORAL
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Authors
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Jerry M. Chow
- IBM TJ Watson Research Center
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Antonio D. Corcoles
- IBM TJ Watson Research Center
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Jay M. Gambetta
- IBM TJ Watson Research Center
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Chad Rigetti
- IBM TJ Watson Research Center
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Blake R. Johnson
- BBN Raytheon Technologies
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John A. Smolin
- IBM TJ Watson Research Center
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Seth Merkel
- IBM TJ Watson Research Center
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Stefano Poletto
- IBM TJ Watson Research Center
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Jim Rozen
- IBM TJ Watson Research Center
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Mary Beth Rothwell
- IBM TJ Watson Research Center
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George A. Keefe
- IBM TJ Watson Research Center
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Mark B. Ketchen
- IBM TJ Watson Research Center
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Matthias Steffen
- IBM TJ Watson Research Center
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Driving two-qubit entanglement with an enhanced ZZ interaction in circuit QED
ORAL
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Authors
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Blake R. Johnson
- Raytheon BBN Technologies
- Disruptive Information Processing Technologies Group, Raytheon BBN Technologies
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C.A. Ryan
- Raytheon BBN Technologies
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Marcus da Silva
- Disruptive Information Processing Technologies Group, Raytheon BBN Technologies
- Raytheon BBN Technologies
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J.M. Chow
- IBM T.J. Watson Research
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J.M. Gambetta
- IBM T.J. Watson Research
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S. Merkel
- IBM T.J. Watson Research
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T. Ohki
- Raytheon BBN Technologies
- Disruptive Information Processing Technologies Group, Raytheon BBN Technologies
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Controlling superconducting qubits in the presence of a strong, constant ZZ interaction
ORAL
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Authors
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Seth Merkel
- IBM
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Implementation of a Toffoli Gate with Superconducting Circuits
ORAL
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Authors
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Arkady Fedorov
- ETH Zurich
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Lars Steffen
- ETH Zurich
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Matthias Baur
- ETH Zurich
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Marcus da Silva
- Raytheon BBN Technologies
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Andreas Wallraff
- ETH Zurich
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Multiple photon effects in coupled anharmonic oscillators for circuit QED architectures
ORAL
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Authors
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Jay Gambetta
- IBM T.J. Watson Research Center, Yorktown Heights, New York 10598, USA
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Observing Resonant Entanglement Dynamics in Circuit QED
ORAL
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Authors
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J.A. Mlynek
- ETH Zurich
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A.A. Abdumalikov
- ETH Zurich
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J.M. Fink
- ETH Zurich
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L. Steffen
- ETH Zurich
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C. Lang
- ETH Zurich
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A.F. van Loo
- ETH Zurich
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A. Wallraff
- ETH Zurich
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Benchmarking a Teleportation Protocol realized in Circuit QED
ORAL
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Authors
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Matthias Baur
- ETH Zurich
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Arkady Fedorov
- ETH Zurich
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Lars Steffen
- ETH Zurich
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Marcus da Silva
- Raytheon BBN Technologies
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Andreas Wallraff
- ETH Zurich
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Characterization of a two-transmon processor with individual single-shot qubit readout
ORAL
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Authors
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Denis Vion
- CEA Saclay
- CEA-Saclay, France
- CEA-Saclay
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Florian Ong
- CEA-Saclay, France
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Vivien Schmitt
- CEA Saclay
- CEA-Saclay, France
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Romain Lauro
- CEA Saclay
- CEA-Saclay, France
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Nicolas Boulant
- CEA-Saclay, France
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Patrice Bertet
- CEA Saclay
- CEA-Saclay, France
- CEA-Saclay
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Andreas Dewes
- CEA Saclay
- CEA-Saclay, France
- CEA-Saclay
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Daniel Esteve
- CEA Saclay
- CEA-Saclay, France
- CEA-Saclay
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Demonstrating quantum speed-up in a superconducting two-qubit processor
ORAL
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Authors
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Andreas Dewes
- CEA Saclay
- CEA-Saclay, France
- CEA-Saclay
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Romain Lauro
- CEA Saclay
- CEA-Saclay, France
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Florian Ong
- CEA Saclay
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Vivien Schmitt
- CEA Saclay
- CEA-Saclay, France
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Daniel Esteve
- CEA Saclay
- CEA-Saclay, France
- CEA-Saclay
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Patrice Bertet
- CEA Saclay
- CEA-Saclay, France
- CEA-Saclay
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Denis Vion
- CEA Saclay
- CEA-Saclay, France
- CEA-Saclay
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Perola Milman
- Laboratoire Materiaux et Phenomenes Quantiques, Universite Paris Diderot
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