Quantum Error Mitigation and Machine Learning
FOCUS · D52 · ID: 2154976
Presentations
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Resource efficient transfer learning approach for error mitigation of quantum circuits at scale
ORAL
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Presenters
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Yuval Baum
Q-CTRL
Authors
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Yuval Baum
Q-CTRL
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Gavin S Hartnett
Q-CTRL
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Nuiok Dicair
Q-CTRL
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ABSTRACT WITHDRAWN
COFFEE_KLATCH
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Machine Learning for Practical Quantum Error Mitigation
ORAL
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Presenters
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Haoran Liao
University of California, Berkeley
Authors
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Haoran Liao
University of California, Berkeley
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Derek S Wang
IBM Quantum, IBM T.J. Watson Research Center, IBM Quantum
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Iskandar Sitdikov
IBM Quantum
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Ciro Salcedo
Columbia University
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Alireza Seif
IBM Quantum, University of Chicago
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Zlatko K Minev
IBM Quantum, IBM
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Virtual distillation with neural quantum states
ORAL
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Presenters
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Ryo Maekura
The University of Tokyo
Authors
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Ryo Maekura
The University of Tokyo
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Yasunari Suzuki
NTT Computer and Data Science Laboratories
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Nobuyuki Yoshioka
University of Tokyo, Department of Applied Physics, The University of Tokyo
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Yuuki Tokunaga
NTT Computer and Data Science Laboratories
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Quantum Computing of a Frenkel Hamiltonian with Deep Learning-Based Error Mitigation
ORAL
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Presenters
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Yi-Ting Lee
University of Illinois at Urbana-Champai
Authors
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Yi-Ting Lee
University of Illinois at Urbana-Champai
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Vijaya Begum-Hudde
University of Illinois at Urbana-Champaign
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Barbara Jones
IBM
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Andre Schleife
University of Illinois at Urbana-Champaign
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Automating physical experiments via Large Language Models: an attempt on superconducting quantum processors
ORAL
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Presenters
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Zijian Zhang
University of Toronto
Authors
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Zijian Zhang
University of Toronto
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Shuxiang Cao
University of Oxford
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Mohammed Alghadeer
University of California, Berkeley, University of Oxford
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Simone D Fasciati
University of Oxford
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Michele Piscitelli
University of Oxford
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Mustafa S Bakr
University of Oxford
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Peter J Leek
University of Oxford
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Alán Aspuru-Guzik
University of Toronto
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What is optimal way to mitigate/suppress quantum errors?
ORAL · Invited
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Publication: [1] K. Tsubouchi, T. Sagawa, N. Yoshioka, "Universal cost bound of quantum error mitigation based on quantum estimation theory", arXiv:2208.09385, to appear in PRL.
[2] N. Yoshioka, Y. Suzuki, S. Endo, Y. Tokunaga, S. Akibue, "Optimal random compilation for early fault-tolerant quantum computing", in preparation.
[3] N. Yoshioka, T. Okubo, Y. Suzuki, Y. Koizumi, W. Mizukami, "Hunting for quantum-classical crossover in condensed matter problems," arXiv:2210.14109.Presenters
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Nobuyuki Yoshioka
University of Tokyo, Department of Applied Physics, The University of Tokyo
Authors
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Nobuyuki Yoshioka
University of Tokyo, Department of Applied Physics, The University of Tokyo
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Confirmation of Spatiotemporally-correlated Qubit Errors from Cosmic Rays
ORAL
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Presenters
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Patrick M Harrington
Massachusetts Institute of Technology MI, Massachusetts Institute of Technology, Massachusetts Institute of Technology (MIT), Massachusetts Institute of Technology MIT
Authors
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Patrick M Harrington
Massachusetts Institute of Technology MI, Massachusetts Institute of Technology, Massachusetts Institute of Technology (MIT), Massachusetts Institute of Technology MIT
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Mingyu Li
Massachusetts Institute of Technology MIT
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Max Hays
MIT, Massachusetts Institute of Technology (MIT), Massachusetts Institute of Technology MI, Massachusetts Institute of Technology, Massachussets Institute of Technology, Massachusetts Institute of Technology MIT
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Wouter Van De Pontseele
Massachusetts Institute of Technology MIT
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Daniel Mayer
Massachusetts Institute of Technology MIT
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Michael A Gingras
MIT Lincoln Laboratory
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Bethany M Niedzielski
MIT Lincoln Lab, MIT Lincoln Laboratory
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Hannah M Stickler
MIT Lincoln Laboratory
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Jonilyn L Yoder
MIT Lincoln Lab, MIT Lincoln Laboratory
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Mollie E Schwartz
MIT Lincoln Laboratory
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Jeffrey A Grover
Massachusetts Institute of Technology, Massachusetts Institute of Technology (MIT), Massachusetts Institute of Technology MIT
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Kyle Serniak
MIT Lincoln Laboratory & MIT RLE, MIT Lincoln Laboratory, MIT Lincoln Laboratory, MIT RLE
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Joseph A Formaggio
Massachusetts Institute of Technology MIT
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William D Oliver
Massachusetts Institute of Technology MI, Massachusetts Institute of Technology, Massachusetts Institute of Technology (MIT), Massachusetts Institute of Technology MIT
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Modeling and testing novel quasiparticle traps on superconducting qubits via geometric gap engineering
ORAL
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Presenters
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Ugur Alyanak
Fermilab, University of Chicago
Authors
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Ugur Alyanak
Fermilab, University of Chicago
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Ziwen Huang
Fermilab
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Wei-Ting Lin
University of Michigan
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Xinyuan You
Fermilab
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Alexander Romanenko
Fermilab, Fermi National Accelerator Laboratory
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Anna Grassellino
Fermilab, Fermi National Accelerator Laboratory
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Young-Kee Kim
University of Chicago, APS President 2024, University of Chicago
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Shaojiang Zhu
Fermilab, Fermi National Accelerator Laboratory
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Modeling Particle Impacts and Quasiparticle Poisoning in Superconducting Qubit Arrays
ORAL
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Presenters
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Eric Yelton
Syracuse University
Authors
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Eric Yelton
Syracuse University
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Clayton Larson
Syracuse University
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Kenneth R Dodge
Syracuse University
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Vito M Iaia
Syracuse University
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Gianluigi Catelani
Technology Innovation Institute, Technological Innovation Institute, Forschungszentrum Jülich GmbH
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Noah Kurinsky
SLAC National Accelerator Laboratory; Kavli Institute for Particle Astrophysics & Cosmology
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Paul G Baity
Brookhaven National Lab
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Robert McDermott
University of Wisconsin - Madison
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B.L.T. Plourde
Syracuse University
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Optimal Experimental Design for Quantum Circuits:A case study for the mitigation of quasiparticle poisoning
ORAL
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Presenters
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Paul G Baity
University of Glasgow, Brookhaven National Laboratory
Authors
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Paul G Baity
University of Glasgow, Brookhaven National Laboratory
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Natalie Isenberg
Brookhaven National Laboratory
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Kristofer Reyes
Brookhaven National Laboratory
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Byung-Jun Yoon
Brookhaven National Laboratory
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Gilchan Park
Brookhaven National Laboratory
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Eric Yelton
Syracuse University
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Clayton Larson
Syracuse University
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Spencer Weeden
University of Wisconsin-Madison, University of Wisconsin Madison, University of Wisconsin - Madison
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Gabriel Spahn
University of Wisconsin - Madison
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Robert McDermott
University of Wisconsin - Madison
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Britton L Plourde
Syracuse University
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Nathan Urban
Brookhaven National Laboratory
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Adolfy Hoisie
Brookhaven National Laboratory
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Impact of Ionizing Radiation on Energy Relaxation in Superconducting Fluxonium Qubits
ORAL
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Presenters
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Nicolas Gosling
Karlsruhe Institute fuer Technologie
Authors
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Nicolas Gosling
Karlsruhe Institute fuer Technologie
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Francesco D DeDominicis
INFN, Laboratori Nazionali del Gran Sasso, GSSI, INFN
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Martin Spiecker
IQMT and PHI, Karlsruhe Institute of Technology (KIT)
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Patrick Paluch
IQMT and PHI, Karlsruhe Institute of Technology (KIT)
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Ambra Mariani
INFN, Sezione di Roma, INFN
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Nicolas Zapata
Karlsruhe Institute of Technology
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Ivan Colantoni
INFN, Sezione di Roma, INFN, INFN, CNR-NANOTEC
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Ivan Colantoni
INFN, Sezione di Roma, INFN, INFN, CNR-NANOTEC
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Ivan Colantoni
INFN, Sezione di Roma, INFN, INFN, CNR-NANOTEC
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Stefano Pirro
INFN, Laboratori Nazionali del Gran Sasso, INFN
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Laura Cardani
INFN, Sezione di Roma, INFN
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Ioan-Mihai Pop
Karlsruhe Institute of Technology, IQMT and PHI, Karlsruhe Institute of Technology; University of Stuttgart
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Characterizing frequency fluctuations induced non-Markovian noise in superconducting qubits
ORAL
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Publication: [1] Abhishek Agarwal, Lachlan P. Lindoy, Deep Lall, Francois Jamet, and Ivan Rungger. "Modelling non-Markovian noise in driven superconducting qubits." arXiv preprint arXiv:2306.13021 (2023).
[2] Abhishek Agarwal, Lachlan P. Lindoy, Yannic Rath, Deep Lall, and Ivan Rungger. "Identifying qubit frequency fluctuations in superconducting qubits" (in preparation)Presenters
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Abhishek Agarwal
National Physical Laboratory (NPL)
Authors
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Abhishek Agarwal
National Physical Laboratory (NPL)
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Lachlan Lindoy
National Physical Laboratory (NPL)
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Yannic Rath
National Physical Laboratory (NPL)
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Deep M Lall
National Physical Laboratory (NPL)
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Ivan Rungger
National Physical Laboratory, National Physical Laboratory (NPL)
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