Digital Quantum Simulation III: Algorithms

ORAL · MAR-L17 · ID: 3989820






Presentations

  • ORAL

    Publication: arXiv:2501.09702

    Presenters

    • Javier Robledo Moreno

      • IBM Thomas J. Watson Research Center
      • IBM T. J. Watson Research Center
      • IBM Quantum

    Authors

    • Javier Robledo Moreno

      • IBM Thomas J. Watson Research Center
      • IBM T. J. Watson Research Center
      • IBM Quantum
    • William Kirby

      • IBM Quantum, IBM T.J. Watson Research Center
      • IBM Research Yorktown
      • IBM T.J. Wtson Research Center
      • IBM Quantum
    • Antonio Mezzacapo

      • IBM Thomas J. Watson Research Center
    • Mario Motta

      • IBM Thomas J. Watson Research Center
    • Jaffery Yu

      • Joint Center for Quantum Information and Computer Science, NIST/University of Maryland
    • Joseph T Iosue

      • University of Maryland College Park
    • Kunal Sharma

      • IBM Thomas J. Watson Research Center
    • Mirko Amico

      • IBM Thomas J. Watson Research Center
    • Luke Bertels

      • Quantum Information Science Section, Oak Ridge National Laboratory
    • Daniel Claudino

      • Oak Ridge National Laboratory
    • Bryce G Fuller

      • IBM Quantum
    • Peter Groszkowski

      • Oak Ridge National Laboratory
    • Travis S Humble

      • Oak Ridge National Laboratory
    • Petar Jurcevic

      • IBM Thomas J. Watson Research Center
      • IBM Quantum
    • Thomas A Maier

      • Oak Ridge National Laboratory
    • Bibek B Pokharel

      • IBM Thomas J. Watson Research Center
    • Alireza Seif

      • IBM Corporation
    • Amir Shehata

      • Oak Ridge National Laboratory
    • Kevin J Sung

      • IBM Thomas J. Watson Research Center
    • Minh C Tran

      • IBM Quantum
      • BM Quantum, IBM T.J. Watson Research Center
      • IBM Corporation
      • IBM
    • Vinay Tripathi

      • University of Southern California
      • IBM

    View abstract →

  • ORAL

    Publication: Variational Time Evolution Compression for Solving Impurity Models on Quantum
    Hardware (https://arxiv.org/abs/2508.10526)
    Dynamical Mean Field Theory for Real Materials using Variational Quantum
    Compressed Time Evolution on a Quantum Computer (title not final, planned paper)

    Presenters

    • Stefan Wolf

      • Friedrich-Alexander University Erlangen-Nuremberg

    Authors

    • Stefan Wolf

      • Friedrich-Alexander University Erlangen-Nuremberg
    • Martin Eckstein

      • Institute of Theoretical Physics, University of Hamburg and The Hamburg Centre for Ultrafast Imaging
    • Johannes Selisko

      • Robert Bosch GmbH
    • Timo Eckstein

      • Friedrich-Alexander-University Erlangen-Nuernberg
      • Friedrich-Alexander University Erlangen-Nuremberg
    • Ludwig Nützel

      • Friedrich-Alexander University Erlangen-Nuremberg
    • Maximilian Amsler

      • Robert Bosch GmbH
    • Christopher Wever

      • Robert Bosch GmbH
    • Georgy Samsonidze

      • Robert Bosch LLC
    • Thomas Eckl

      • Robert Bosch GmbH
    • Michael J Hartmann

      • Friedrich-Alexander-University; Erlangen-Nuernberg
      • Friedrich-Alexander University Erlangen-Nuremberg

    View abstract →

  • ORAL

    Presenters

    • Gengzhi Yang

      • University of Maryland College Park

    Authors

    • Gengzhi Yang

      • University of Maryland College Park
    • Jiaqi Leng

      • University of California, Berkeley
    • Xiaodi Wu

      • University of Maryland College Park
    • Lin Lin

      • University of California, Berkeley

    View abstract →

  • ORAL

    Publication: https://arxiv.org/abs/2505.07929

    Presenters

    • Abid A Khan

      • JPMorgan Chase

    Authors

    • Abid A Khan

      • JPMorgan Chase
    • Sami Boulebnane

      • Global Technology Applied Research, JPMorganChase
      • JPMorgan Chase & Co.
    • Minzhao Liu

      • JPMorganChase
    • Jeffrey Larson

      • Argonne National Laboratory
    • Dylan Herman

      • JPMorgan Chase & Co.
    • Ruslan Shaydulin

      • JPMorgan Chase & Co.
    • Marco Pistoia

      • JP Morgan Chase

    View abstract →