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Showing 1 to 11 of 11 for “"Nitrogen-vacancy centers in diamond"”.

  1. Frequency down-conversion for quantum networking with nitrogen-vacancy centers in diamond

    … conversion (QFC) devices are critical to building long-distance quantum networks, which would connect quantum memories located at distant nodes through optical channels for efficient entanglement distribution. The nitrogen-vacancy (NV) center in diamond is an attractive candidate for these …

    mit Repository record for Frequency down-conversion for quantum networking with nitrogen-vacancy centers in diamond (opens in a new tab)

  2. Tunable and broadband loop gap resonator for nitrogen vacancy centers in diamond

    Nitrogen vacancy centers in diamond have emerged as a solid-state analog to atomic systems with applications ranging from room temperature quantum computing to quantum sensing and metrology. To date, with notably few exceptions, all NV applications rely on coherent manipulation of spin states via …

    mit Repository record for Tunable and broadband loop gap resonator for nitrogen vacancy centers in diamond (opens in a new tab)

  3. High-precision electron-spin sensing with ensembles of nitrogen-vacancy centers in diamond

    … and an experimental realization of a bulk diamond magnetic field and temperature sensor. The sensing is done using continuous-wave electron-spin resonance spectra of nitrogen-vacancy centers in diamond. Experiments were performed using a light-trapping diamond waveguide sample, with which …

    mit Repository record for High-precision electron-spin sensing with ensembles of nitrogen-vacancy centers in diamond (opens in a new tab)

  4. Pulsed Magnetic Imaging of Broad-Frequency Fields using Nitrogen-Vacancy Centers in Diamond

    Wide-field magnetic imaging using nitrogen-vacancy (NV) centers in diamond can yield high-quality images for various applications, including biology, geology, condensed matter physics, and electronics troubleshooting. These quantum sensors yield widefield-of-view images with micron-scale spatial …

    mit Repository record for Pulsed Magnetic Imaging of Broad-Frequency Fields using Nitrogen-Vacancy Centers in Diamond (opens in a new tab)

  5. Coherent control of nitrogen-vacancy centers in diamond nanostructures for quantum sensing and networking

    The exceptional optical and spin properties of the negatively charged nitrogen-vacancy (NV-) center in diamond have led to numerous applications ranging from super-resolution imaging to the exploration of previously untested new phenomena using quantum entanglement for information processing and …

    mit Repository record for Coherent control of nitrogen-vacancy centers in diamond nanostructures for quantum sensing and networking (opens in a new tab)

  6. Development of a Photonic Link for Enhancements in Quantum Applications

    Quantum computing leverages the laws of quantum mechanics to process information and solve complex problems at levels that classical computers can't attain. However, its hardware implementation remains challenging due to environmental constraints. To address these concerns, this work explores the …

    alabama Repository record for Development of a Photonic Link for Enhancements in Quantum Applications (opens in a new tab)

  7. A scalable quantum computation platform : solid state quantum memories coupled to photonic integrated circuits

    … effects to surpass their classical counterparts in certain applications. However, while proof-of-principle experimental demonstrations have been performed, these are limited to a handful of nodes with limited - and often immutable - connectivity. Here we demonstrate an integrated platform for …

    mit Repository record for A scalable quantum computation platform : solid state quantum memories coupled to photonic integrated circuits (opens in a new tab)

  8. Spin coherence and optical properties of alkali-metal atoms in solid parahydrogen

    Trapped gas phase atoms and molecules are the leading experimental platformsfor applications such as quantum computation, quantum sensing, and tests of fundamental physics. There is active research in solid-state electron spin systems for these applications. Nitrogen-vacancy centers in diamond, …

    unr Repository record for Spin coherence and optical properties of alkali-metal atoms in solid parahydrogen (opens in a new tab)

  9. Optical and spin coherence properties of Rb atoms in solid neon for magnetic field sensing

    In recent years, interest has emerged in solid-state electron spin systems for magnetic field sensing and imaging with nanoscale spatial resolution. The goal is to detect and resolve a single nuclear spin. A significant application for such a spatial resolution is the imaging of complex biological …

    unr Repository record for Optical and spin coherence properties of Rb atoms in solid neon for magnetic field sensing (opens in a new tab)