Defect Qubits I - Group IV Semiconductors for Quantum Networking
FOCUS · G46 · ID: 2155102
Presentations
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Scaled photonic interfaces for quantum networking with tin-vacancy color centers
ORAL
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Presenters
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Ian Christen
Massachusetts Institute of Technology
Authors
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Ian Christen
Massachusetts Institute of Technology
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Hamza H Raniwala
Massachusetts Institute of Technology
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Kevin Chen
Massachusetts Institute of Technology, HRL Laboratories
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David Starling
MIT Lincoln Laboratories
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Isaac Harris
Massachusetts Institute of Technology, MIT
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Marco Colangelo
Massachusetts Institute of Technology MIT
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Franco N C Wong
Massachusetts Institute of Technology
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Karl K Berggren
Massachusetts Institute of Technology MIT
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Scott Hamilton
MIT Lincoln Laboratories
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P. Benjamin Dixon
MIT Lincoln Laboratories
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Dirk Englund
MIT, Massachusetts Institute of Technology
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Single telecom-wavelength vanadium quantum emitters in SiC with ultra-narrow inhomogeneous broadening
ORAL
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Publication: Cilibrizzi, P., Arshad, M. J., Tissot, B., Son, N. T., Ivanov, I. G., Astner, T., ... & Bonato, C. (2023). Ultra-narrow inhomogeneous spectral distribution of telecom-wavelength vanadium centres in isotopically-enriched silicon carbide. arXiv preprint arXiv:2305.01757.
Presenters
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Muhammad Junaid Arshad
Heriot-Watt University
Authors
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Muhammad Junaid Arshad
Heriot-Watt University
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Pasquale Cilibrizzi
Heriot-Watt University
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Benedikt Tissot
Universität Konstanz
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Nguyen Tien Son
Linköping University
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Ivan G Ivanov
Linköping University
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Thomas Astner
Institute for Quantum Optics and Quantum Information
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Philipp Koller
Institute for Quantum Optics and Quantum Information
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Misagh Ghezellou
Linköping University
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Jawad Ul-Hassan
Linköping University
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Daniel White
Heriot-Watt University
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Christiaan Bekker
Heriot-Watt University
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Guido Burkard
University of Konstanz
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Michael Trupke
Institute for Quantum Optics and Quantum Information
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Cristian Bonato
Heriot-Watt University, Edinburgh
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Towards mechanically mediated interference between tin vacancy centers in diamond
ORAL
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Publication: Planned paper: "Mechanically mediated interference between tin vacancy centers in diamond"
Authors: Hamza Raniwala, Ian Christen, Kevin Chen, David Starling, Matthew Trusheim, P. Benjamin Dixon, Dirk EnglundPresenters
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Hamza H Raniwala
Massachusetts Institute of Technology
Authors
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Hamza H Raniwala
Massachusetts Institute of Technology
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Ian Christen
Massachusetts Institute of Technology
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Kevin Chen
Massachusetts Institute of Technology, HRL Laboratories
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David J Starling
Pennsylvania State University
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Benjamin J Dixon
MIT Lincoln Laboratory
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Matthew Trusheim
Massachusetts Institute of Technology, Harvard University
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Dirk Englund
MIT, Massachusetts Institute of Technology
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Electronic structure and properties of a spin qubit based on SnV center in diamond
ORAL
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Presenters
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Viatcheslav V Dobrovitski
QuTech, Delft University of Technology, QuTech and Kavli Institute of Nanoscience, Delft University of Technology, Delft, the Netherlands
Authors
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Viatcheslav V Dobrovitski
QuTech, Delft University of Technology, QuTech and Kavli Institute of Nanoscience, Delft University of Technology, Delft, the Netherlands
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Mao-Hua Du
QuTech and Kavli Institute of Nanoscience, Delft University of Technology, Delft, the Netherlands
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Xinru Tang
QuTech and Kavli Institute of Nanoscience, Delft University of Technology, Delft, the Netherlands
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Fenglei Gu
QuTech and Kavli Institute of Nanoscience, Delft University of Technology, Delft, the Netherlands
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Johannes Borregaard
Department of Physics, Harvard University, Cambridge, MA 02138, USA
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Alp Sipahigil
ORAL · Invited
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Presenters
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Alp Sipahigil
University of California, Berkeley and Lawrence Berkeley National Laboratory, University of California, Berkeley, University of California, Berkeley; Lawrence Berkeley National Laboratory
Authors
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Alp Sipahigil
University of California, Berkeley and Lawrence Berkeley National Laboratory, University of California, Berkeley, University of California, Berkeley; Lawrence Berkeley National Laboratory
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Control and coherence of tin-vacancy qubits in diamonds
ORAL
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Presenters
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Hans Beukers
QuTech - Delft University of Technology, QuTech, Delft University of Technology
Authors
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Hans Beukers
QuTech - Delft University of Technology, QuTech, Delft University of Technology
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Christopher Waas
QuTech - Delft University of Technology, QuTech, Delft University of Technology
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Matteo Pasini
QuTech - Delft University of Technology, QuTech, Delft University of Technology
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Nina Codreanu
QuTech - Delft University of Technology, QuTech, Delft University of Technology
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Julia M Brevoord
QuTech - Delft University of Technology, QuTech, Delft University of Technology
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Tim L Turan
QuTech - Delft University of Technology, QuTech, Delft University of Technology
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Lorenzo De Santis
QuTech - Delft University of Technology, QuTech, Delft University of Technology
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Zarije Ademi
QuTech, Delft University of Technology
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Ronald Hanson
QuTech - Delft University of Technology, Delft University of Technology
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The tin-vacancy center in diamond as a quantum memory node at 4 K
ORAL
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Publication: Microwave-based quantum control and coherence protection of tin-vacancy spin qubits in a strain-tuned diamond membrane heterostructure, Xinghan Guo*, Alexander M. Stramma*, Zixi Li, William G. Roth, Benchen Huang, Yu Jin, Ryan A. Parker, Jesús Arjona Martínez, Noah Shofer, Cathryn P. Michaels, Carola P. Purser, Martin H. Appel, Evgeny M. Alexeev, Tianle Liu, Andrea C. Ferrari, David D. Awschalom, Nazar Delegan, Benjamin Pingault, Giulia Galli, F. Joseph Heremans, Mete Atatüre, Alexander A. High Accepted in PRX (arXiv:2307.11916)
Presenters
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Alexander M Stramma
University of Cambridge, Univ of Cambridge
Authors
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Alexander M Stramma
University of Cambridge, Univ of Cambridge
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Xinghan Guo
University of Chicago
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William G Roth
University of Cambridge
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Zixi Li
University of Chicago
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David D Awschalom
University of Chicago
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Benjamin Pingault
Harvard University, Argonne National Laboratory
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Nazar Delegan
Argonne National Laboratory, Argonne, University of Chicago
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F. Joseph F Heremans
Argonne National Laboratory, Argonne National Lab, Argonne, University of Chicago
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Alexander A High
University of Chicago
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Mete Atatüre
Univ of Cambridge, University of Cambridge
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Coherence protection and microwave spin manipulation of tin vacancy centers in strained diamond membrane
ORAL
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Publication: arXiv: 2307.11916
Presenters
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Xinghan Guo
University of Chicago
Authors
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Xinghan Guo
University of Chicago
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Alexander M Stramma
University of Cambridge, Univ of Cambridge
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Zixi Li
University of Chicago
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William G Roth
University of Cambridge
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Tianle Liu
University of Chicago
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David D Awschalom
University of Chicago
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Benjamin Pingault
Harvard University, Argonne National Laboratory
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Nazar Delegan
Argonne National Laboratory, Argonne, University of Chicago
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F. Joseph F Heremans
Argonne National Laboratory, Argonne National Lab, Argonne, University of Chicago
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Mete Atatüre
Univ of Cambridge, University of Cambridge
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Alexander A High
University of Chicago
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Microwave Spin Control of a Tin-Vacancy Qubit in Diamond
ORAL
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Publication: Rosenthal et al., Phys. Rev. X 13, 031022 (2023)
Presenters
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Eric I Rosenthal
Stanford University
Authors
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Eric I Rosenthal
Stanford University
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Christopher P Anderson
The University of Chicago, University of Illinois Urbana-Champaign, Stanford University
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Hannah C Kleidermacher
Stanford University
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Abigail Stein
Stanford University
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Hope Lee
Stanford University
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Yakub Grzesik
Stanford University
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Giovanni Scuri
Stanford University
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Alison E Rugar
Stanford University
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Daniel Riedel
Stanford University
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Shahriar Aghaeimeibodi
Stanford University
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Geun Ho Ahn
Stanford Univ
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Kasper Van Gasse
Stanford University
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Souvik Biswas
Stanford University
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Jelena Vuckovic
Stanford University
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Understanding the spin-selective transitions of defect spins by ab intio theory of spin-spin and spin-orbit coupling
ORAL
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Presenters
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Michel G Bockstedte
Johannes Kepler University Linz
Authors
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Michel G Bockstedte
Johannes Kepler University Linz
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Maximilian Schober
Johannes Kepler University Linz
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Mirjam Neubauer
Johannes Kepler University Linz
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Abstract Withdrawn
ORAL Withdrawn
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Fiber-coupled waveguide probe co-integrated with electrical control as a cryogenic photonic interface
ORAL
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Presenters
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Dominic Catanzaro
Stanford University
Authors
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Dominic Catanzaro
Stanford University
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Daniil M Lukin
Stanford University
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Eran Lustig
Stanford University
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Melissa A Guidry
Stanford University
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Jelena Vuckovic
Stanford University
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