Quantum Gates in Superconducting Qubits
FOCUS · K46 ·
Presentations
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Fixed-Frequency Qubits Coupled via a Tunable Bus
COFFEE_KLATCH · Invited
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Authors
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David McKay
- IBM T J Watson Res Ctr
- IBM T.J. Watson Research Center
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Direct tune-up of entangling gates generated by a cross resonance drive
ORAL
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Authors
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Sarah Sheldon
- IBM T J Watson Res Ctr
- IBM T.J. Watson Research Center
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Christopher J. Wood
- IBM T.J. Watson Research Center
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Easwar Magesan
- IBM T.J. Watson Research Center
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David C. McKay
- IBM T.J. Watson Research Center
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Jerry M. Chow
- IBM T.J. Watson Research Center
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Jay M. Gambetta
- IBM T.J. Watson Research Center
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Restless Tuneup of High-Fidelity Qubit Gates
ORAL
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Authors
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M.A. Rol
- QuTech and the Kavli Institute of Nanoscience, Delft University of Technology, Delft, The Netherlands
- QuTech and Kavli Institute of Nanoscience, Delft Univ. Tech.
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C.C. Bultink
- QuTech and Kavli Institute of Nanoscience, Delft Univ. Tech.
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T.E. O'Brien
- Instituut-Lorentz for Theoretical Physics,
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S.R. de Jong
- QuTech and Kavli Institute of Nanoscience, Delft Univ. Tech.
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L.S. Theis
- Theoretical Physics, Saarland Univ.
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X. Fu
- QuTech and Kavli Institute of Nanoscience, Delft Univ. Tech.
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F. Luthi
- QuTech and Kavli Institute of Nanoscience, Delft Univ. Tech.
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R.F.L. Vermeulen
- QuTech and Kavli Institute of Nanoscience, Delft Univ. Tech.
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J.C. de Sterke
- QuTech and Kavli Institute of Nanoscience, Delft Univ. Tech.
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A. Bruno
- QuTech and Kavli Institute of Nanoscience, Delft Univ. Tech.
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D. Deurloo
- Netherlands Organization for Applied Scientific Research (TNO) and QuTech, Delft Univ. Tech.
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R.N. Schouten
- QuTech and Kavli Institute of Nanoscience, Delft Univ. Tech.
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F.K. Wilhelm
- Theoretical Physics, Saarland Univ.
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L. DiCarlo
- QuTech and Kavli Institute of Nanoscience, Delft Univ. Tech.
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Automated Bringup of Superconducting Qubits
ORAL
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Authors
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Shane Caldwell
- Rigetti Quantum Computing
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Michael Curtis
- Rigetti Quantum Computing
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Anthony Polloreno
- Rigetti Quantum Computing
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Matthew Reagor
- Rigetti Quantum Computing
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Robert Smith
- Rigetti Quantum Computing
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William Zeng
- Rigetti Quantum Computing
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Chad Rigetti
- Rigetti Quantum Computing
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Tunable, Flexible and Efficient Optimization of Control Pulses for Superconducting Qubits, part I - Theory
ORAL
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Authors
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Shai Machnes
- Saarland University
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Elie Assémat
- Saarland University
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David Tannor
- Weizmann Institute
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Frank Wilhelm
- Saarland University
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Tunable, Flexible and Efficient Optimization of Control Pulses for Superconducting Qubits, part II - Applications
ORAL
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Authors
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Elie Assémat
- Saarland University
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Shai Machnes
- Saarland University
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David Tannor
- Weizmann Institute of Science
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Frank Wilhelm-Mauch
- Saarland University
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Error budgeting single and two qubit gates in a superconducting qubit
ORAL
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Authors
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Z. Chen
- UC Santa Barbara
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B. Chiaro
- UC Santa Barbara
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A. Dunsworth
- UC Santa Barbara
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B. Foxen
- UC Santa Barbara
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C. Neill
- UC Santa Barbara
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C. Quintana
- UC Santa Barbara
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J. Wenner
- UC Santa Barbara
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John. M. Martinis
- Google, Santa Barbara & UC Santa Barbara
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Optimizing gates in the presence of leakage errors
ORAL
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Authors
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Christopher J. Wood
- IBM T J Watson Res Ctr
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David McKay
- IBM T J Watson Res Ctr
- IBM T.J. Watson Research Center
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Sarah Sheldon
- IBM T J Watson Res Ctr
- IBM T.J. Watson Research Center
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Jerry Chow
- IBM
- IBM T J Watson Research Center
- IBM T J Watson Res Ctr
- IBM TJ Watson Research Center
- IBM T.J Watson Research Center
- IBM T. J. Watson Research Center
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Jay Gambetta
- IBM T J Watson Res Ctr
- IBM T.J Watson Research Center
- IBM T. J. Watson Research Center
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Analytic approach for suppressing leakage errors in superconducting qubits
ORAL
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Authors
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Hugo Ribeiro
- Department of physics, McGill University
- McGill University, Montreal, Quebec, Canada.
- McGill University
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Alexandre Baksic
- Department of physics, McGill University
- McGill University
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Aash Clerk
- Department of physics, McGill University
- McGill Univ
- McGill University
- McGill University, Montreal, Quebec, Canada.
- Department of Physics, McGill University, 3600 Rue University, Montreal, Quebec H3A 2T8, Canada.
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Driving qubit phase gates with sech shaped pulses
ORAL
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Authors
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Junling Long
- National Institute of Standards and Technology
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Ksiang-Sheng Ku
- NIST
- National Institute of Standards and Technology
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Xian Wu
- National Institute of Standards and Technology
- NIST
- NIST - Boulder
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Russell E. Lake
- Department of Applied Physics, Aalto University, Finland
- NIST
- National Institute of Standards and Technology
- QCD Labs, Department of Applied Physics, Aalto University, Finland
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Edwin Barnes
- Department of Physics, Virginia Tech
- Virginia Tech
- Department of Physics, Virginia Tech, Blacksburg, Virginia 24061, USA
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Sophia Economou
- Dept. of Physics, Virginia Tech
- Virginia Tech
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David Pappas
- NIST
- National Institute of Standards and Technology
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Tunable inter-qubit coupling as a resource for gate based quantum computing with superconducting circuits
ORAL
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Authors
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B. Chiaro
- UC Santa Barbara
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C. Neill
- UC Santa Barbara
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Z. Chen
- UC Santa Barbara
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A. Dunsworth
- UC Santa Barbara
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B. Foxen
- UC Santa Barbara
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Chris Quintana
- UC Santa Barbara
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J. Wenner
- UC Santa Barbara
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John Martinis
- Google and University of California, Santa Barbara
- UC Santa Barbara and Google, Santa Barbara
- Google Inc. and UCSB
- Google and UC Santa Barbara
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Implementing single qubit gates using RSFQ pulses
ORAL
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Authors
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Per Liebermann
- Saarland University
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Frank Wilhelm
- Saarland University
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High-fidelity two qubit gate via single flux quantum pulses
ORAL
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Authors
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Maxim Vavilov
- Univ of Wisconsin, Madison
- University of Wisconsin - Madison
- UW-Madison
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Zhenyi Qi
- University of Wisconsin - Madison
- UW-Madison
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Robert McDermott
- Univ of Wisconsin, Madison
- University of Wisconsin - Madison
- University of Wisconsin-Madison
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