Novel Spin Qubit Materials and Technologies II
FOCUS · Y36 · ID: 47207
Presentations
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Optical and Strain Stabilization of Point Defects in Silicon Carbide
ORAL
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Publication: Optical and Strain Stabilization of Point Defects in Silicon Carbide
Presenters
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Jonathan R Dietz
Harvard University
Authors
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Jonathan R Dietz
Harvard University
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Evelyn L Hu
Harvard University
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Cryogenic optical characterization of T center in ion-implanted silicon for spin-photon interface
ORAL
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Publication: Planned paper: Cryogenic optical characterization of T center in ion-implanted silicon for spin-photon interface
Presenters
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Wei Liu
Mesoscopic Optics and Quantum Electronics Laboratory, University of California, Los Angeles
Authors
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Wei Liu
Mesoscopic Optics and Quantum Electronics Laboratory, University of California, Los Angeles
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Jiahui Huang
Mesoscopic Optics and Quantum Electronics Laboratory, University of California, Los Angeles
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Murat C Sarihan
Mesoscopic Optics and Quantum Electronics Laboratory, University of California, Los Angeles
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Jin Ho Kang
Mesoscopic Optics and Quantum Electronics Laboratory, University of California, Los Angeles, Fang Lu Mesoscopic Optics and Quantum Electronics Laboratory, University of California, Los Angeles
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Baolai Liang
California Nano-System Institute, University of California, Los Angeles
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CheeWei Wong
Mesoscopic Optics and Quantum Electronics Laboratory, University of California, Los Angeles
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Coherence Properties of Single Erbium Ions in CaWO<sub>4</sub>
ORAL
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Presenters
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Salim Ourari
Princeton University
Authors
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Salim Ourari
Princeton University
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Lukasz Dusanowski
Princeton University
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Sebastian Horvath
Princeton University
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Christopher Phenicie
Princeton University
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Mehmet Tuna Uysal
Princeton University
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Isaiah Gray
Princeton University
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Paul Stevenson
Princeton University
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Nathalie P de Leon
Princeton University
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Jeff D Thompson
Princeton University
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Qubits made by advanced semiconductor manufacturing
ORAL · Invited
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Publication: Zwerver, et al. Qubits made by advanced semiconductor manufacturing, arXiv:2101.12650v1(2021)
Presenters
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Anne-Marije J Zwerver
Delft University of Technology, QuTech and Kavli Institute of Nanoscience, Delft University of Technology
Authors
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Anne-Marije J Zwerver
Delft University of Technology, QuTech and Kavli Institute of Nanoscience, Delft University of Technology
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Thomas F Watson
Components Research, Intel Corporation, Intel, Intel Corporation, Hillsboro, Intel Corporation
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Tobias Krahenmann
Delft University of Technology
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Lester F Lampert
Intel Corporation, Intel Corporation, Hillsboro
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Hubert C C George
Intel Corp - Santa Clara, Intel, Intel Corporation
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Ravi Pillarisetty
Components Research, Intel Corporation, Intel Corporation, Intel, Intel Corporation, Hillsboro
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Stephanie A Bojarski
Components Research, Intel Corporation, Intel Corporation, Intel
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Payam Amin
Intel Corp - Santa Clara
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Sergey V Amitonov
Delft University of Technology, QuTech and Kavli Institute of Nanoscience, Delft University of Technology
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Jelmer M Boter
Delft University of Technology
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Juan Pablo Dehollain
Delft University of Technology
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Eric M Henry
Components Research, Intel Corporation, Intel Corporation, Intel
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Roza Kotlyar
Intel Corporation, Hillsboro, Intel Corporation - Hillsboro, Intel Corporation
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Mario Lodari
Delft University of Technology, QuTech and Kavli Institute of Nanoscience, TU Delft, P.O. Box 5046, 2600 GA Delft, The Netherlands, QuTech and Kavli Institute of Nanoscience, Delft University of Technology
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Florian Luthi
Intel Corporation, Hillsboro, Intel Corporation
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Brennen Mueller
Intel Corporation
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otto k zietz
Components Research, Intel Corporation, Intel, Intel Corporation
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Jeanette M Roberts
Intel Corporation - Hillsboro, Intel Corporation
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Giordano Scappucci
Delft University of Technology, QuTech and Kavli Institute of Nanoscience, TU Delft, P.O. Box 5046, 2600 GA Delft, The Netherlands, QuTech and Kavli Institute of Nanoscience, Delft University of Technology
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Nodar Samkharadze
Delft University of Technology, QuTech and Netherlands Organisation for Applied Scientific Research
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Menno Veldhorst
Delft University of Technology
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Guoji Zheng
Intel Corporation
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Lieven Vandersypen
Delft University of Technology, QuTech and Kavli Institute of Nanoscience, Delft University of Technology
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Jim S Clarke
Intel Corporation, Intel, Intel Corporation, Hillsboro
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Coherent control of a single nuclear spin near an Er<sup>3+</sup> ion
ORAL
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Presenters
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Mehmet Tuna Uysal
Princeton University
Authors
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Mehmet Tuna Uysal
Princeton University
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Mouktik Raha
Princeton University
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Songtao Chen
Princeton University
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Christopher Phenicie
Princeton University
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Salim Ourari
Princeton University
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Slava Dobrovitski
Delft University of Technology
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Jeff D Thompson
Princeton University
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Nuclear Spin Wave Quantum Register for a Single Rare-Earth Ion Qubit
ORAL
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Publication: https://arxiv.org/abs/2108.12723
Presenters
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Andrei Ruskuc
Caltech
Authors
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Andrei Ruskuc
Caltech
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Chun-Ju Wu
Caltech
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Joonhee Choi
Caltech
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Jake Rochman
Caltech
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Andrei Faraon
Caltech
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GHZ State Generation using an Optically Addressable Single Rare-Earth Ion Qubit
ORAL
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Publication: https://arxiv.org/abs/2108.12723
Presenters
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Chun-Ju Wu
Caltech
Authors
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Chun-Ju Wu
Caltech
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Andrei Ruskuc
Caltech
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Joonhee Choi
Caltech
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Jake Rochman
Caltech
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Andrei Faraon
Caltech
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Computational search of transition-metal-doped cyrstals for spin-light interfaces
ORAL
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Presenters
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Juan D Lizarazo Ferro
Brown University
Authors
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Christopher Dodson
Brown University
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Juan D Lizarazo Ferro
Brown University
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Rashid Zia
Brown University
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Hyperfine structure of transition metal defects in SiC
ORAL
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Publication: B. Tissot and G. Burkard, Spin structure and resonant driving of spin-1/2 defects in SiC. Phys. Rev. B, 103(6), 064106 (2021). http://dx.doi.org/10.1103/physrevb.103.064106<br>B. Tissot and G. Burkard, Hyperfine structure of transition metal defects in SiC. Phys. Rev. B, 104(6), 064102 (2021). http://dx.doi.org/10.1103/physrevb.104.064102
Presenters
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Benedikt Tissot
University of Konstanz
Authors
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Benedikt Tissot
University of Konstanz
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Guido Burkard
Univ Konstanz, University of Konstanz, Konstanz
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Sub-megahertz homogeneous linewidth for Er in Si via in situ single photon detection
ORAL
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Presenters
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Sven Rogge
University of New South Wales
Authors
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Sven Rogge
University of New South Wales
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Ian Berkman
University of New South Wales
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Alexey Lyasota
University of New South Wales
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Gabe De Boo
University of New South Wales
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John G Bartholomew
University of Sydney, The University of Sydney
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Brett C Johnson
RMIT
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Jeffrey C McCallum
University of Melbourne, School of Physics, University of Melbourne
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BinBin Xu
University of New South Wales
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Shouyi Xie
University of New South Wales
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Rose L Ahlefeldt
Australian National University
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Matt J Sellars
Australian National University
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Chunming Yin
UNSW & USTC
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All-optical single spin in silicon
ORAL
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Publication: 1. MacQuarrie, E. R. et al. Generating T centres in photonic silicon-on-insulator material by ion implantation. New J. Phys. 23, 103008 (2021).<br>1. Higginbottom, D. B. et al. Optical observation of single spins in silicon. http://arxiv.org/abs/2103.07580 (2021).
Presenters
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Daniel B Higginbottom
Simon Fraser University
Authors
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Daniel B Higginbottom
Simon Fraser University
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Alexander T Kurkjian
Photonic
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Camille Chartrand
Photonic
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Moein Kazemi
Simon Fraser University
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Evan R MacQuarrie
Photonic
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Nicholas A Brunelle
Simon Fraser University
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Camille Bowness
Photonic
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Adam DeAbreu
Simon Fraser University
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Leea A Stott
Simon Fraser University
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Sjoerd Roorda
Universite de Montreal
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Michael Thewalt
Simon Fraser University, Simon Fraser Univ
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Stephanie Simmons
Simon Fraser Univeristy
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Scaling Spin Coherence in Solid-state Defect Qubit
ORAL
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Publication: S. Kanai et al., arXiv 2102.02986 (2021).
Presenters
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Shun Kanai
Tohoku University, Tohoku University, Japan
Authors
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Shun Kanai
Tohoku University, Tohoku University, Japan
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F. Joseph F Heremans
Argonne National Laboratory and University of Chicago, Argonne National Laboratory
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Hosung Seo
Ajou University, Ajou Univ
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Gary Wolfowicz
Argonne National Laboratory and University of Chicago, Argonne National Laboratory
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Christopher P Anderson
University of Chicago
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Sean E Sullivan
Argonne National Laboratory
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Mykyta Onizhuk
University of Chicago
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Giulia Galli
University of Chicago, University of Chicago and Argonne National Laboratory
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David D Awschalom
University of Chicago and Argonne National Laboratory, University of Chicago, University of Chicago, Argonne National Laboratory
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Hideo Ohno
Tohoku University, Tohoku University, Japan
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Extended coherence of electron and nuclear spins in epitaxial purified silicon devices fabricated by atomic lithography.
ORAL
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Presenters
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Jonathan Reiner
University of New South Wales
Authors
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Jonathan Reiner
University of New South Wales
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Pascal Macha
University of New South Wales, Silicon Quantum Computing Pty Ltd., Level 2, Newton Building, UNSW Sydney, Kensington, NSW 2052, Australia
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Saiful Haque Misha
University of New South Wales
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Yousun Chung
University of New South Wales, Silicon Quantum Computing Pty Ltd., Level 2, Newton Building, UNSW Sydney, Kensington, NSW 2052, Australia
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Christian Lehner
University of New South Wales
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Daniel Keith
UNSW, University of New South Wales
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Ludwik Kranz
University of New South Wales, Silicon Quantum Computing Pty Ltd., Level 2, Newton Building, UNSW Sydney, Kensington, NSW 2052, Australia
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Samuel K Gorman
University of New South Wales, Silicon Quantum Computing Pty Ltd., Level 2, Newton Building, UNSW Sydney, Kensington, NSW 2052, Australia
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Yu-ling Hsueh
University of New South Wales
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Brandur Thorgrimsson
University of New South Wales, Silicon Quantum Computing Pty Ltd., Level 2, Newton Building, UNSW Sydney, Kensington, NSW 2052, Australia
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Rajib Rahman
University of New South Wales, Silicon Quantum Computing Pty Ltd., Level 2, Newton Building, UNSW Sydney, Kensington, NSW 2052, Australia
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Joris G Keizer
University of New South Wales, Silicon Quantum Computing Pty Ltd., Level 2, Newton Building, UNSW Sydney, Kensington, NSW 2052, Australia
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Michelle Y Simmons
University of New South Wales, Silicon Quantum Computing Pty Ltd., Level 2, Newton Building, UNSW Sydney, Kensington, NSW 2052, Australia; Centre of Excellence for Quantum Computation and Communication Tec
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