This research is supported by MEXT Q-LEAP (Quantum Leap Flagship Program).
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Flagship Project:
Development of innovative sensor systems by highly sophisticated control of solid quantum sensors - 
          
            
Basic Foundation Research:
Research on quantum sensing devices using quantum entangled photons - 
          
            
Basic Foundation Research:
Establishment of earthquake early alert methods using high-sensitivity gravity gradiometer - 
          
            
Basic Foundation Research:
Development of photon-number-resolving quantum nano-photonics - 
          
            
Basic Foundation Research:
Development of quantum atomic magnetometer with dual quantum noise squeezing - 
          
            
Basic Foundation Research:
Development of Spectroscopic techniques based on cutting-edge quantum optics toward elucidating functions of complex molecular systems - 
          
            
Basic Foundation Research:
Material science of complex defects for highly-sensitive quantum sensors - 
          
            
Basic Foundation Research:
Development of next generation high-performance inertial quantum sensors 
Basic Foundation Research (Establishment of earthquake early alert methods using high-sensitivity gravity gradiometer)
| Date | Authors | Journals / DOI | Titles | |
|---|---|---|---|---|
| 1 | 2019/3 | T. Shimoda, M. Ando | Classical and Quantum Gravity 36, 125001 (2019) DOI: 10.1088/1361-6382/ab2162  | Nonlinear vibration transfer in torsion pendulums | 
| 2 | 2019/3 | M. Kimura, N. Kame, S. Watada, M. Ohtani, A. Araya, Y.i Imanishi, M.i Ando, T. Kunugi | Earth, Planets and Space 71, 27 (2019) DOI: 10.1186/s40623-019-1006-x  | Earthquake-induced prompt gravity signals identified in dense array data in Japan | 
Basic Foundation Research (Material science of complex defects for highly-sensitive quantum sensors)
| Date | Authors | Journals / DOI | Titles | |
|---|---|---|---|---|
| 1 | 2019/3 | S. Shikata, Y. Matsuyama, T. Teraji | Japanese Journal of Applied Physics 58(4), 45503, 1-6 (2019) DOI: 10.7567/1347-4065/ab0541  | Dislocation analysis of homoepitaxial diamond (001) film by x-ray topography | 
| 2 | 2019/2 | S. Kono, T. Kageura, Y. Hayashi, S.G. Ri, T. Teraji, D. Takeuchi, M. Ogura, H. Kodama, A. Sawabe, M. Inaba, A. Hiraiwa, H. Kawarada | Diamond and Related Materials 93(3), 105-130 (2019) DOI: 10.1016/j.diamond.2019.01.017  | Carbon 1s X-ray photoelectron spectra of realistic samples of hydrogen-terminated and oxygen-terminated CVD diamond (111) and (001) |