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Tag: Optically Detected Magnetic Resonance

  • Boron Nitride Defects Boosted for Quantum Sensing with Threefold Signal Enhancement
    Quantum Sensors

    Boron Nitride Defects Enhance Quantum Sensing

    by Muhammad Rohail T.February 6, 2026
  • RF-Over-Fiber Achieves Scalable Control of Spin Qubits Via ODMR Spectroscopy
    Emerging Technology

    RF-Over-Fiber Controls Spin Qubits with ODMR

    by Muhammad Rohail T.January 31, 2026
  • S Coherence Achieved in Surface-Scaffolded Molecular Qubit Via hBN Stabilisation
    Quantum Hardware

    Molecular Qubit Coherence via hBN Stabilization

    by Muhammad Rohail T.January 29, 2026
  • Simulation Toolkit Advances Realistic Noise Modelling for Seven-Level Nv-Center Magnetometry
    Quantum Sensors

    Nv-Center Magnetometry: Realistic Noise Simulation Toolkit

    by Muhammad Rohail T.January 23, 2026
  • Quantum Magnetometer Achieves High Performance Using Scalable 4H-Silicon Carbide Technology
    Quantum Research News

    SiC Quantum Magnetometer Achieves 1000x Sensitivity

    by Muhammad Rohail T.January 20, 2026
  • Quantum Noise Spectroscopy with PL5 Centers Enables Room-Temperature Imaging of Silicon Carbide Defects
    Quantum Research News

    Silicon Carbide: Room-Temp Defect Imaging via Quantum Noise

    by Muhammad Rohail T.January 7, 2026
  • Photodynamics and Temperature Dependence of Single Spin Defects in Hexagonal Boron Nitride Reveal Cascading Spin Transitions and Enhanced Coherence at Reduced Temperatures
    Quantum Sensors

    h-BN Spin Defects Show Coherence at Low Temperatures

    by Muhammad Rohail T.December 10, 2025
  • Tip-enhanced Quantum-Sensing Spectroscopy Reconfigures Solid-State Single-Photon Emitters for Enhanced Sensing and Applications
    Quantum Sensors

    Quantum Sensing Reconfigures Solid-State Emitters

    by Muhammad Rohail T.November 28, 2025
  • Hbn Nanoflakes Achieve AC Magnetic Sensitivity of 1.1e-9 at 1e15 Ions/cm² Via Optimized Irradiation
    Quantum Research News

    Hbn Nanoflakes: 1.1e-9 AC Magnetic Sensitivity

    by Muhammad Rohail T.October 21, 2025
  • Room-temperature Optical Control of Organic Diradicals Demonstrates 10% Magneto-photoluminescence Modulation
    Quantum Technology, Quantum Research News

    Room-Temp Optical Control of Organic Diradicals

    by Muhammad Rohail T.October 13, 2025
  • Fiber-integrated NV Magnetometer with Microcontroller-based Lock-in Technique Enables Low-Cost Magnetic Resonance Detection
    Quantum Sensors, Quantum Research News

    NV Magnetometer Enables Low-Cost Resonance Detection

    by Muhammad Rohail T.October 7, 2025
  • Diamond and hBN Nanoparticles Achieve 2.9-fold Enhanced Photoluminescence in Centimeter-Scale Optical Cavities
    Quantum Research News

    Diamond and hBN Nanoparticles Achieve 2.9-fold Enhanced Photoluminescence in Centimeter-Scale Optical Cavities

    by Dr. DonovanSeptember 8, 2025
  • Researchers Achieve Alignment-free Magnetic Field Sensing Using Boron Vacancies in Polycrystalline hBN
    Quantum Sensors

    Researchers Achieve Alignment-free Magnetic Field Sensing Using Boron Vacancies in Polycrystalline hBN

    by Dr. DonovanSeptember 4, 2025
  • Self-Assembled Nanodiamond Layers Enable Scalable Magnetic Imaging with NV Centers
    Quantum Sensors

    Self-Assembled Nanodiamond Layers Enable Scalable Magnetic Imaging with NV Centers

    by Dr. DonovanAugust 6, 2025
  • Circularly Polarised Microwaves Enhance Spin Control in Hexagonal Boron Nitride
    Physics

    Circularly Polarised Microwaves Enhance Spin Control in Hexagonal Boron Nitride

    by Dr. DonovanJune 8, 2025
  • Quantum Sensors Revolutionize Prosthetic Control with Skin-Based Detection
    Quantum Sensors

    Quantum Sensors Revolutionize Prosthetic Control with Skin-Based Detection

    by Dr. DonovanDecember 4, 2024
  • German Researchers Develop Compact, Cost-Effective LED Quantum Sensor for Broad Applications
    Quantum Sensors

    German Researchers Develop Compact, Cost-Effective LED Quantum Sensor for Broad Applications

    by Dr. DonovanFebruary 28, 2024
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