Quantum Computing with Donor Spins II
FOCUS · F74 · ID: 1098122
Presentations
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Silicon T centre devices for quantum networks
ORAL · Invited
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Publication: https://arxiv.org/abs/2209.14260 (submitted)<br>Three additional planned papers to be submitted before the March 2023.
Presenters
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Daniel B Higginbottom
Simon Fraser University, Simon Fraser University; Photonic Inc.
Authors
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Daniel B Higginbottom
Simon Fraser University, Simon Fraser University; Photonic Inc.
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Waveguide-integrated silicon T centres
ORAL
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Publication: https://arxiv.org/abs/2209.14260
Presenters
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Adam DeAbreu
Simon Fraser University; Photonic Inc.
Authors
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Adam DeAbreu
Simon Fraser University; Photonic Inc.
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Camille Bowness
Simon Fraser University; Photonic Inc.
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Amirhossein Alizadeh
Simon Fraser University; Photonic Inc.
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Camille Chartrand
Simon Fraser University; Photonic Inc.
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Nicholas A Brunelle
Simon Fraser University; Photonic Inc.
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Evan R MacQuarrie
Photonic Inc.
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Nicholas R Lee-Hone
Photonic Inc.
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Myles Ruether
Simon Fraser University; Photonic Inc.
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Moein Kazemi
Simon Fraser University; Photonic Inc.
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Alex T Kurkjian
Photonic Inc.
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Sjoerd Roorda
Universite de Montreal
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Nikolai V Abrosimov
Leibniz-Institut fur Kristallzuchtung
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Hans-Joachim Pohl
VITCON Projectconsult GmbH
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Michael L Thewalt
Simon Fraser University
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Daniel B Higginbottom
Simon Fraser University, Simon Fraser University; Photonic Inc.
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Stephanie Simmons
Simon Fraser University; Photonic Inc.
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High-throughput search for defect-based qubits in silicon
ORAL
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Publication: [1] Bergeron, L., Chartrand, C., Kurkjian, A. T. K., Morse, K. J., Riemann, H., Abrosimov, N. V, Becker, P., Pohl, H.-J., Thewalt, M. L. W. & Simmons, S., "Silicon-Integrated Telecommunications Photon-Spin Interface," PRX Quantum 1, 20301 (2020). DOI: 10.1103/PRXQuantum.1.020301<br>[2] Higginbottom, D.B., Kurkjian, A.T., Chartrand, C., Kazemi, M., Brunelle, N.A., MacQuarrie, E.R., Klein, J.R., Lee-Hone, N.R., Stacho, J., Ruether, M., Bowness, C., et al. "Optical observation of single spins in silicon". Nature, 607 266-270 (2022), DOI:10.1038/s41586-022-04821-y<br>[3] Morse, K.J., Abraham, R.J., DeAbreu, A., Bowness, C., Richards, T.S., Riemann, H., Abrosimov, N.V., Becker, P., Pohl, H.J., Thewalt, M.L. & Simmons, S., "A photonic Platform for Donor Spin Qubits in Silicon," Science advances, 3(7), p.e1700930 (2017). DOI: 10.1126/sciadv.1700930<br>[4] Cloutier, G.C., Kossyrev, P. A., & Xu, J., "Optical gan and stimulated emission in periodic nanopatterned crystalline silicon," Nature materials, 4, 887-891 (2005). DOI: 10.1038/nmat1530
Presenters
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Yihuang Xiong
Pennsylvania State University, Dartmouth College, Department of Materials Science and Engineering, The Pennsylvania State University
Authors
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Yihuang Xiong
Pennsylvania State University, Dartmouth College, Department of Materials Science and Engineering, The Pennsylvania State University
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Diana Dahliah
Université catholique de Louvain
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Céline Bourgois
Université catholique de Louvain
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Sinead M Griffin
Lawrence Berkeley National Laboratory, Materials Science Division and Molecular Foundry, Berkeley Lab, Lawrence Berkeley National Lab, Materials Sciences Division and Molecular Foundry, LBNL
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Alp Sipahigil
University of California, Berkeley
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Geoffroy Hautier
Dartmouth College
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Spin control of a tin vacancy center in diamond
ORAL
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Presenters
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Eric I Rosenthal
Stanford University
Authors
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Eric I Rosenthal
Stanford University
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Hannah C Kleidermacher
Stanford University
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Abigail Stein
Stanford University
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Alison E Rugar
Stanford University
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Daniel Riedel
Stanford University
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Hope Lee
Stanford University
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Jakub Grzesik
Stanford University
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Shahriar Aghaeimeibodi
Stanford University
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Kasper Van Gasse
Stanford University
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Christopher P Anderson
Stanford University
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Jelena Vuckovic
Stanford University
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Probing spin-phonon interactions in silicon vacancy centers via surface acoustic waves
ORAL
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Presenters
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Eliza Cornell
Harvard University
Authors
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Eliza Cornell
Harvard University
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Sophie Weiyi Ding
Harvard University
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Benjamin Pingault
Harvard University, Delft University of Technology, Harvard University
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Zhujing Xu
Harvard University
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Marko Loncar
Harvard University, Harvard
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Mechanical control of a single nuclear spin in diamond
ORAL
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Publication: Phys. Rev. X 12, 011056 (2022)
Presenters
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Benjamin Pingault
Harvard University, Delft University of Technology, Harvard University
Authors
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Benjamin Pingault
Harvard University, Delft University of Technology, Harvard University
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Smarak Maity
Harvard University
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Graham Joe
Harvard University
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Michelle Chalupnik
Harvard University
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Daniel R Assumpcao
Harvard University
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Eliza Cornell
Harvard University
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Linbo Shao
Harvard University
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Marko Loncar
Harvard University, Harvard
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Towards high-fidelity gates for spin qubits in diamond
ORAL
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Presenters
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Jiwon Yun
Delft University of Technology
Authors
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Jiwon Yun
Delft University of Technology
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Hans P Bartling
Delft University of Technology
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Luc Enthoven
Delft University of Technology
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Kai-Niklas Schymik
Delft University of Technology
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Margriet van Riggelen
QuTech, Delft University of Technology
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Macoud Babaie
Delft University of Technology
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Fabio Sebastiano
Delft University of Technology, Quantum and Computer Engineering, and QuTech, Delft University of Technology
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Tim Hugo Taminiau
Delft University of Technology
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Electronic structure, spin properties, and charge state stability of the negatively charged nickel vacancy center in diamond
ORAL
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Presenters
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Ian Morris
Quantum Optical Devices Laboratory, Michigan State University
Authors
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Ian Morris
Quantum Optical Devices Laboratory, Michigan State University
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Kai Klink
Quantum Optical Devices Laboratory, Michigan State University
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Logan Crooks
Quantum Optical Devices Laboratory, Michigan State University
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Leeju Singh
Physics of Complex Systems, Weizmann Institute of Science
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David Hardeman
Element Six Global Innovation Centre
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Ofer Firstenberg
Physics of Complex Systems, Weizmann Institute of Science
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Shannon S Nicley
Quantum Optical Devices Laboratory, Michigan State University; Coatings and Diamond Technologies Division, Center Midwest, Fraunhofer USA Inc.
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Eilon Poem
Physics of Complex Systems, Weizmann Institute of Science, Weizmann Institute of Science
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Jonas N Becker
Quantum Optical Devices Laboratory, Michigan State University; Coatings and Diamond Technologies Division, Center Midwest, Fraunhofer USA Inc.
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Discriminating nuclear spins in an electronic environment over several nanometers and several hundred nuclei
ORAL
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Publication: N. D'Souza et al., (in preparation)
Presenters
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Noella D'Souza
University of California, Berkeley
Authors
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Noella D'Souza
University of California, Berkeley
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Kieren A Harkins
University of California, Berkeley
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David Marchiori
University of California, Berkeley
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Paul M Schindler
Max Planck Institute for the Physics of Complex Systems
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Emanuel Druga
University of California, Berkeley
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Maxwell McAllister
University of California, Berkeley
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Marin Bukov
St. Kliment Ohridski University of Sofia, Max Planck Institute for the Physics of Complex System
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Ashok Ajoy
University of California, Berkeley
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Diamond bullseye antennas for enhanced quantum collection efficiency
ORAL
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Publication: N/A
Presenters
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Anchita Addhya
University of Chicago, The University of Chicago
Authors
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Anchita Addhya
University of Chicago, The University of Chicago
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Clayton T DeVault
University of Chicago
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Zixi Li
University of Chicago
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Xinghan Guo
University of Chicago
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Nazar Delegan
Argonne National Laboratory
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David D Awschalom
University of Chicago
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F. Joseph F Heremans
Argonne National Laboratory
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Alexander A High
University of Chicago
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All Optical Initialisation and Readout and Coherent Population Trapping of a Single Germanium Vacancy in Diamond
ORAL
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Presenters
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Chris Adambukulam
University of New South Wales
Authors
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Chris Adambukulam
University of New South Wales
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Hyma H Vallabhapurapu
University of New South Wales
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Brett C Johnson
University of Melbourne, Royal Melbourne Institute of Technology
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Andrea Morello
University of New South Wales
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Arne Laucht
1) University of New South Wales, 2) Diraq Pty. Ltd, 1) University of New South Wales, 2) Diraq Pty. Ltd., University of New South Wales, University of New South Wales, Diraq Pty. Ltd.
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Manipulating charge states in diamond via resonantly-driven near-field interactions with proximal germanium vacancies
ORAL
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Presenters
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Zixi Li
University of Chicago
Authors
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Zixi Li
University of Chicago
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Xinghan Guo
University of Chicago
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Francesco Andreoli
ICFO
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Yu Jin
University of Chicago
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Anil Bilgin
University of Chicago
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Giulia Galli
University of Chicago, University of Chicago, Argonne National Laboratory, Pritzker School of Molecular Engineering and Department of Chemistry, University of Chicago, IL, USA; Materials Science Division, Argonne National Laboratory, IL, USA, Argonne National Laboratory and University of Chicago
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Darrick Chang
ICFO-The Institute of Photonic Sciences, ICFO
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Alexander A High
University of Chicago
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Formation of Shallow Indium Donor Qubits in ZnO via Ion Implantation
ORAL
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Presenters
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Xingyi Wang
University of Washington
Authors
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Xingyi Wang
University of Washington
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Christian Zimmermann
Department of Physics, University of Washington
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Michael Titze
Sandia National Laboratories
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Lasse Vines
Department of Physics, University of Oslo
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Vasileios Niaouris
Department of Physics, University of Washington
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Samuel H D’Ambrosia
University of Washington, Department of Physics, University of Washington
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Ethan Hansen
University of Washington, Department of Physics, University of Washington
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Edward S Bielejec
Sandia National Laboratories
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Kai-Mei C Fu
University of Washington
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