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NV Centers and Other Defects in Diamond

FOCUS · MAR-S19 · ID: 3106539







Presentations

  • Strong Electric-dipole-enabled transitions in the excited state of the Nitrogen Vacancy center in diamond

    ORAL

    Publication: T. Delord, R. Monge, G. Lopez-Morales, O. Bach, C. E. Dreyer, J. Flick, and C. A. Meriles, Probing Electric-Dipole-Enabled Transitions in the Excited State of the Nitrogen-Vacancy Center in Diamond, arXiv:2405.16280.

    Presenters

    • Tom Delord

      City College of New York

    Authors

    • Tom Delord

      City College of New York

    • Richard Gustavo Monge

      The City College of New York

    • Carlos Andres Meriles

      City College of New York

    • Gabriel I Lopez Morales

      Stony Brook University, City College of New York

    • Cyrus E Dreyer

      Stony Brook University (SUNY)

    • Johannes Flick

      CCNY, CUNY GC, Simons Foundation (Flatiron Institute), City College of New York, City College of New York and Flatiron Institute's Center for Computational Quantum Physics (CCQ)

    • Olaf Bach

      City College of New York

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  • High-fidelity gates in a multi-qubit diamond quantum processor (Part I, Gate design)

    ORAL

    Publication: Van Ommen et al. Improved Electron-Nuclear Quantum Gates for Spin Sensing and Control. arXiv:2409.13610 (2024)

    Presenters

    • Hendrik Benjamin van Ommen

      Delft University of Technology

    Authors

    • Hendrik Benjamin van Ommen

      Delft University of Technology

    • Margriet van Riggelen

      Delft University of Technology

    • Jiwon Yun

      Delft University of Technology

    • Tim Hugo Taminiau

      Delft University of Technology

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  • High-fidelity gates in a multi-qubit diamond quantum processor (Part II, Circuit design and Benchmarking)

    ORAL

    Publication: Bartling et al. Universal high-fidelity quantum gates for spin-qubits in diamond. arXiv:2403.10633 (2024)

    Presenters

    • Margriet van Riggelen

      Delft University of Technology

    Authors

    • Margriet van Riggelen

      Delft University of Technology

    • Jiwon Yun

      Delft University of Technology

    • Hendrik Benjamin van Ommen

      Delft University of Technology

    • Tim Hugo Taminiau

      Delft University of Technology

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  • Concatenated continuous dynamical decoupling of ensemble NV centers in diamond for GHz- range AC magnetometry

    ORAL

    Presenters

    • Takuya Kitamura

      Institute for Quantum Optics, Ulm University

    Authors

    • Takuya Kitamura

      Institute for Quantum Optics, Ulm University

    • Genko Genov

      Institute for Quantum Optics, Ulm University

    • Hitoshi Sumiya

      Sumitomo Electric Industries Ltd.

    • Shinobu Onoda

      Quantum Materials and Applications Research Center, National Institute for Quantum Science and Technology, National Institutes for Quantum Science and Technology

    • Junichi Isoya

      Faculty of Pure and Applied Sciences, University of Tsukuba

    • Fedor Jelezko

      Ulm University, Institute for Quantum Optics, Ulm University

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  • Theoretical study of entanglement generation protocols using diamond spin qubits and optical cavities

    ORAL

    Presenters

    • Niv Bharos

      Delft University of Technology

    Authors

    • Niv Bharos

      Delft University of Technology

    • Daniel Bedialauneta Rodriguez

      Delft University of Technology

    • Julius Fischer

      Delft University of Technology

    • Hans Beukers

      Delft University of Technology

    • Tim L Turan

      Delft University of Technology, Technical University of Delft

    • Johannes Borregaard

      Harvard University, Department of Physics, Harvard University

    • Ronald Hanson

      Delft University of Technology

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  • Spin and Optical Properties of ZnO Donors Synthesized via Implantation

    ORAL · Invited

    Presenters

    • Kai-Mei Camilla Fu

      University of Washington

    Authors

    • Lasse Vines

      University of Oslo

    • Kai-Mei Camilla Fu

      University of Washington

    • Michael T Titze

      Sandia National Lab, Sandia National Laboratories

    • Xingyi Wang

      University of Washington

    • Ethan R Hansen

      University of Washington

    • Joseph L Falson

      Caltech

    • Bethany Matthews

      Pacific Northwest National Lab

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  • Towards a Programmable Quantum Simulator based on Spins in Diamond

    ORAL

    Presenters

    • Madhumati Seetharaman

      Delft University of Technology

    Authors

    • Madhumati Seetharaman

      Delft University of Technology

    • Christina Ioannou

      Delft University of Technology

    • Kai-Niklas Schymik

      Delft University of Technology

    • Guido L van de Stolpe

      Delft University of Technology

    • Benjamin Pingault

      University of Chicago, Argonne National Laboratory & University of Chicago

    • Dan Yudilevich

      Delft University of Technology

    • Valentino Pavić

      Delft University of Technology

    • Naoual El Yazidi

      Delft University of Technology

    • Tim Hugo Taminiau

      Delft University of Technology

    View abstract →

  • Self-aligned quasi-1D spin arrays of NV centers created via swift heavy ion irradiation for quantum information processing

    ORAL

    Publication: [1] R. E. Lake, et al., "Direct formation of nitrogen-vacancy centers in nitrogen doped diamond along the trajectories of swift heavy ions", Appl. Phys. Lett. 118, 084002 (2021) doi: 10.1063/5.0036643<br>[2] W. Liu et al., "Optical and spin properties of nitrogen vacancy centers formed along the tracks of high energy heavy ions", arXiv:2403.03570

    Presenters

    • Wei Liu

      Accelerator Technology and Applied Physics Division, Lawrence Berkeley National Laboratory, Lawrence Berkeley National Laboratory

    Authors

    • Wei Liu

      Accelerator Technology and Applied Physics Division, Lawrence Berkeley National Laboratory, Lawrence Berkeley National Laboratory

    • Arun Persaud

      Accelerator Technology and Applied Physics Division, Lawrence Berkeley National Laboratory, Lawrence Berkeley National Laboratory

    • Kaushalya Jhuria

      Accelerator Technology and Applied Physics Division, Lawrence Berkeley National Laboratory, Lawrence Berkeley National Laboratory

    • Qing Ji

      Accelerator Technology and Applied Physics Division, Lawrence Berkeley National Laboratory, Lawrence Berkeley National Laboratory

    • Edward Barnard

      Molecular Foundry, Lawrence Berkeley National Laboratory, Lawrence Berkeley National Laboratory

    • Shaul Aloni

      Lawrence Berkeley National Labs, Lawrence Berkeley National Laboratory, Molecular Foundry, Lawrence Berkeley National Laboratory

    • Hunter Ocker

      Earth and Environmental Sciences, Lawrence Berkeley National Laboratory

    • Nishanth Anand

      Earth and Environmental Sciences, Lawrence Berkeley National Laboratory

    • Saahit Mogan

      Earth and Environmental Sciences, Lawrence Berkeley National Laboratory

    • Zhao Hao

      Earth and Environmental Sciences, Lawrence Berkeley National Laboratory, Lawrence Berkeley National Laboratory

    • Aleksi A Leino

      Helsinki Institute of Physics and Department of Physics, University of Helsinki

    • Chloé Nozais

      Helsinki Institute of Physics and Department of Physics, University of Helsinki

    • Maria Eugenia Toimil-Molares

      Materials Research Department, GSI Helmholtzzentrum für Schwerionenforschung

    • Flyura Djurabekova

      Helsinki Institute of Physics and Department of Physics, University of Helsinki, University of Helsinki

    • Thomas Schenkel

      University of California, Berkeley, Accelerator Technology and Applied Physics Division, Lawrence Berkeley National Laboratory, Lawrence Berkeley National Laboratory

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  • Information-efficient belief propagation for closed-loop control and model learning of solid-state quantum emitters

    ORAL

    Presenters

    • Ian R Berkman

      Massachusetts Institute of Technology

    Authors

    • Ian R Berkman

      Massachusetts Institute of Technology

    • Yong Hu

      Massachusetts Institute of Technology, State Univ of NY - Buffalo

    • Marc G Bacvanski

      Massachusetts Institute of Technology

    • Dirk R Englund

      Columbia University, Massachusetts Institute of Technology, MIT

    View abstract →