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Tag: thin-film lithium niobate

  • Diamond and Lithium Niobate Combine to Build Efficient Quantum Light Channels
    Quantum Computing News

    Diamond and Lithium Niobate Combine to Build Efficient Quantum Light Channels

    by Quantum StrategistMarch 10, 2026
  • New Nanoscale Device Doubles Light Frequency with Exceptional Precision and Efficiency
    Quantum Physics

    New Nanoscale Device Doubles Light Frequency with Exceptional Precision and Efficiency

    by Rohail T.February 11, 2026
  • Light-Based Computing Takes Step Towards Efficiency with Stable Lithium Niobate Tuning
    Artificial Intelligence

    Light-Based Computing Takes Step Towards Efficiency with Stable Lithium Niobate Tuning

    by The Quantum MechanicFebruary 11, 2026
  • Advances in Lithium Niobate Photonics Unlock 120-Fold Improvement in Frequency Stability
    Quantum Research News

    Advances in Lithium Niobate Photonics Unlock 120-Fold Improvement in Frequency Stability

    by Rohail T.December 30, 2025
  • Pockels Effect Induces Strong Kerr Nonlinearity in Lithium Niobate Waveguide, Achieving -8.5 dBm Output and 116.8nm Spectrum
    Quantum Technology

    Pockels Effect Induces Strong Kerr Nonlinearity in Lithium Niobate Waveguide, Achieving 8.5 dBm Output and 116.8nm Spectrum

    by Rohail T.December 13, 2025
  • Thin-film Lithium Niobate on Silicon Enables Large-Scale Optical Interconnects for Machine Learning
    Technology

    Thin-film Lithium Niobate on Silicon Enables Large-Scale Optical Interconnects for Machine Learning

    by Rohail T.December 10, 2025
  • Lithium Niobate Atomic Layer Etching Achieves Directional Control for Integrated Photonics Fabrication
    Quantum Research News

    Lithium Niobate Atomic Layer Etching Achieves Directional Control for Integrated Photonics Fabrication

    by Rohail T.November 10, 2025
  • Lithium Niobate Integrated Photonics Enables First Electrically Pumped, Self-Starting Passive Mode-Locked Laser
    Quantum Applications

    Lithium Niobate Integrated Photonics Enables First Electrically Pumped, Self-Starting Passive Mode-Locked Laser

    by Rohail T.October 8, 2025
  • Thin-film Lithium Niobate Achieves 70mm Continuous Poling, Enabling Highly-Efficient Light Sources
    Quantum Research News

    Thin-film Lithium Niobate Achieves 70mm Continuous Poling, Enabling Highly-Efficient Light Sources

    by Rohail T.October 2, 2025
  • Multi-channel Microwave-to-Optics Conversion Achieves 40nm Bandwidth Using Hybrid Photonic-Phononic Waveguide
    Technology

    Multi-channel Microwave-to-Optics Conversion Achieves 40nm Bandwidth Using Hybrid Photonic-Phononic Waveguide

    by Dr. DonovanSeptember 15, 2025
  • Xanadu and HyperLight Demonstrate 2 dB/m Loss in TFLN Photonic Chips
    Quantum Computing Business News

    Xanadu and HyperLight Demonstrate 2 dB/m Loss in TFLN Photonic Chips

    by Dr. DonovanAugust 3, 2025
  • Nanoscale Poling Enables High-Efficiency Nonlinear Frequency Conversion in Lithium Niobate
    Quantum Hardware

    Nanoscale Poling Enables High-Efficiency Nonlinear Frequency Conversion in Lithium Niobate

    by Dr. DonovanJuly 18, 2025
  • Q.ANT Secures €62M In Funding to Boost Energy-Efficient AI Processors
    Quantum Computing Business News

    Q.ANT Secures €62M In Funding to Boost Energy-Efficient AI Processors

    by Dr. DonovanJuly 17, 2025
  • High-Q Nanophotonic Resonators Achieve Ultra-High Quality Factors via Spectral Hole Burning in Erbium-Doped Lithium Niobate
    Quantum Sensors

    High-Q Nanophotonic Resonators Achieve Ultra-High Quality Factors via Spectral Hole Burning in Erbium-Doped Lithium Niobate

    by Dr. DonovanApril 29, 2025
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