Scalable Superconducting Quantum Systems
FOCUS · A48 · ID: 2155090
Presentations
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Superconducting quantum processor tune-up automation
ORAL
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Presenters
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Dominic Lennon
QuantrolOx Ltd.
Authors
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Dominic Lennon
QuantrolOx Ltd.
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Fully automated comprehensive characterization and bring-up of superconducting quantum computers
ORAL
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Presenters
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Shai Machnes
Qruise GmbH
Authors
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Shai Machnes
Qruise GmbH
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André Melo
Qruise GmbH, Qruise
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Roman Razilov
Qruise
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William Steadman
Qruise GmbH, Qruise
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Alastair Marshall
Qruise
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Ana Laura Gramajo
Qruise
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Shinibali Bhattacharyya
Qruise
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Yousof Mardoukhi
Qruise GmbH, Qruise
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Deepak Khurana
Qruise
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Marc Bernot
Qruise GmbH, Qruise
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Anurag Saha Roy
Qruise GmbH, Qruise
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Engineering of superconducting quantum computers at utility-scale
ORAL · Invited
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Presenters
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Blake R Johnson
IBM TJ Watson Research Center
Authors
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Blake R Johnson
IBM TJ Watson Research Center
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RSFQ Programmable Digital Multi-Tone Generator for Quantum Circuits Control
ORAL
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Publication: Planned paper (Manuscript in progress)
Presenters
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Joao Barbosa
University of Glasgow
Authors
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Joao Barbosa
University of Glasgow
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Jack Brennan
University of Glasgow
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Jonathan A Collins
University of Glasgow
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Alessandro Casaburi
QuantWare
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Martin P Weides
University of Glasgow, 1. James Watt School of Engineering, University of Glasgow
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Alex Kirichenko
SEEQC, Inc.
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Oleg Mukhanov
SeeQC, Inc., SEEQC, Inc.
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Measurement of leakage to higher qubit levels when using SFQ digital control.
ORAL
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Publication: M. A. Castellanos-Beltran, A. J. Sirois, L. Howe, D. Olaya, J. Biesecker, S. P. Benz, P. F. Hopkins; Coherence-limited digital control of a superconducting qubit using a Josephson pulse generator at 3 K. Appl. Phys. Lett. 8 May 2023; 122 (19): 192602. https://doi.org/10.1063/5.0147692
Presenters
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Manuel A Castellanos-Beltran
National Institute of Standards and Technology, Boulder, National Institute of Standards and Tech
Authors
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Manuel A Castellanos-Beltran
National Institute of Standards and Technology, Boulder, National Institute of Standards and Tech
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Adam J Sirois
National Institute of Standards and Technology, Boulder, National Institute of Standards and Tech
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David Olaya
University of Colorado, Boulder, CO - National Institute of Standards and Technology, Boulder, National Institute of Standards and Technology, NIST/University of Colorado at Boulder
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John P Biesecker
National Institute of Standards and Technology, Boulder, NIST
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Samuel P Benz
National Institute of Standards and Technology Boulder
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Peter Hopkins
National Institute of Standards and Technology, Boulder, National Institute of Standards and Technology Boulder, National Institute of Standards and Technology
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Fast Gates for Slow Fluxonium Qubits Using Single Flux Quantum Control
ORAL
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Publication: Planned: Fast Gates for Slow Fluxonium Qubits Using Single Flux Quantum Control, to be submitted in mid-December 2023 to Phys. Rev. Applied
Presenters
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Lucas A Rogers
University of Wisconsin - Madison
Authors
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Lucas A Rogers
University of Wisconsin - Madison
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Oleg Mukhanov
SeeQC, Inc., SEEQC, Inc.
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Maxim G Vavilov
UW-Madison
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Digital bit pattern based control of transmon qubits
ORAL
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Presenters
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Pasi Lähteenmäki
IQM Finland OY
Authors
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Pasi Lähteenmäki
IQM Finland OY
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Ugur Yilmaz
IQM Germany GmbH
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Aleksei Sharafiev
IQM Germany GmbH
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Olli-Pentti Saira
IQM Finland OY
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Using Integrated Photodiodes Towards Scalable Superconducting Quantum I/O
ORAL
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Presenters
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Samuel Schwab
Booz Allen Hamilton, Booz Allen Hamilton Inc.
Authors
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Samuel Schwab
Booz Allen Hamilton, Booz Allen Hamilton Inc.
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Alexander Madden
Griffiss Institute
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Michael Senatore
AFRL
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Erin Sheridan
AFRL
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Daniel L Campbell
Air Force Research Laboratory, Information Directorate
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Joseph Falvo
Griffiss Institute
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Derrick Sica
Murray Associates
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Andrew Brownell
Murray Associates
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Nicholas J Barton
Murray Associates
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Michael Fanto
AFRL
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Matthew LaHaye
AFRL
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Attainment of SS < 10 mV/dec at 4 K in in-situ passivated planar bulk GaAs MOSFETs: alternative cryogenic electronics
ORAL
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Presenters
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Lawrence B Young
National Taiwan University
Authors
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Lawrence B Young
National Taiwan University
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Jun Liu
National Taiwan University
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Hsien-Wen Wan
Graduate Institute of Applied Physics and Dept. of Physics, National Taiwan University, Graduate Institute of Applied Physics and Department of Physics, National Taiwan University, National Taiwan University
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Yen-Hsun Glen Lin
National Tsing Hua University
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Yi-Ting Cheng
National Tsing Hua University, Department of Physics, National Tsing Hua University
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Bo-Yuan Chen
Taiwan Semiconductor Research Institute
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Kun-Ming Chen
Taiwan Semiconductor Research Institute
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Hsiao-Wen Chang
Academia Sinica
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Ming-Jye Wang
Academia Sinica
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Jueinai Kwo
National Tsing Hua University, Department of Physics, National Tsing Hua University, Natl Tsing Hua Univ
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Minghwei Hong
National Taiwan University, Graduate Institute of Applied Physics and Dept. of Physics, National Taiwan University, Graduate Institute of Applied Physics and Department of Physics, National Taiwan University, Natl Taiwan Univ
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Cryo-CMOS flux control generator for tunable transmons
ORAL
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Presenters
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Devin L Underwood
IBM Quantum
Authors
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Devin L Underwood
IBM Quantum
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Joseph Glick
IBM Quantum
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Ken Inoue
IBM Quantum
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Daniil Frolov
IBM Thomas J. Watson Research Center, IBM Quantum
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John Timmerwilke
IBM Quantum
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David Frank
IBM Quantum
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Scott Lekuch
IBM Quantum
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Raphael Robertazzi
IBM Quantum
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Sudipto Chakraborty
IBM Quantum
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Kevin Tien
IBM Quantum
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Mark Yeck
IBM Quantum
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John Bulzacchelli
IBM Quantum
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Chris W Baks
IBM Quantum
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Dorothy Wisnieff
IBM Quantum
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Brian Gaucher
IBM Quantum
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Daniel J Friedman
IBM Quantum
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Abstract Withdrawn
ORAL Withdrawn
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