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  • 2025.07.18

    QI2025 / 8th IFQMS, July 29-31, 2025

  • 2025.05.26

    [Press Release] Quantum Eyes on Energy Loss: Diamond Quantum Imaging for Next-Gen Power Electronics

  • 2025.04.28

    [Event Report]The 10th Quantum Solid Flagship Seminar

  • 2025.04.08

    [Ended]The 10th Quantum Solid Flagship Seminar

  • 2025.03.10

    [Press Release] Breakthrough in High-Sensitivity Quantum Sensors with Diamond Heteroepitaxy

Flagship Project
Development of innovative sensor systems by highly sophisticated control of solid quantum sensors

Building a co-creative center to conduct collaborative R&D seamlessly from physics to applications of innovative solid quantum sensor systems. Developing prototypes of quantum sensors by utilizing diamond NV center (nitrogen–vacancy pair), whose spin coherence is excellent even at room temperature in the atmosphere and whose quantum states can be initialized and read out by light.

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Basic Foundation Research

 

・Development of photon-number-resolving quantum nano-photonics

・Development of quantum atomic magnetometer with dual quantum noise squeezing

・Development of Spectroscopic techniques based on cutting-edge
quantum optics toward elucidating functions of complex molecular systems

・Research on quantum sensing devices using quantum entangled photons

・Material science of complex defects for highly-sensitive quantum sensors

・Development of next generation high-performance inertial quantum sensors

Read more
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    • Development of photon-number-resolving quantum nano-photonics
    • Development of quantum atomic magnetometer with dual quantum noise squeezing
    • Development of Spectroscopic techniques based on cutting-edge quantum optics toward elucidating functions of complex molecular systems
    • Material science of complex defects for highly-sensitive quantum sensors
    • Development of next generation high-performance inertial quantum sensors
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