Expectations and Prospects for Innovation in Quantum Technology | NTT R&D Website
Expectations and Prospects for Innovation in Quantum Technology quantum computer quantum sensing quantum
https://www.rd.ntt/e/research/JN202304_21549.html
Wide Bandwidth and High Quality Squeezed Light Source | NTT R&D Website
gravitational wave detection and quantum sensing is expected. Background and existing issues Optical quantum
https://www.rd.ntt/e/research/DT0025.html
Superconducting Quantum Circuits Research Group | NTT Basic Research Laboratories | NTT R&D Website
. Abdurakhimov, and S. Saito Submicrometer-scale temperature sensing using quantum coherence of a superconducting
https://www.rd.ntt/e/brl/group_introduction/group_015.html
Contents
Heterostructures Quantum Dot Laser Using Photonic Crystal Nanocavity From Science to Innovative Technology Member
https://www.rd.ntt/e/brl/result/activities/file/report06/2006_E.html
超伝導量子回路研究グループ|NTT物性科学基礎研究所|NTT R&D Website
sensing using quantum coherence of a superconducting qubit New J. Phys. 25 (1), 013036 (2023). Z. Q. Ao, S
https://www.rd.ntt/brl/group_introduction/group_015.html
Quantum Error Mitigation and Its Progress | NTT R&D Website
our research group. First, I review the worlds’ first quantum sensing method incorporating QEM. I then
https://www.rd.ntt/e/research/JN202309_23092.html
Characterization of Metal Ions in Neurons Using a Superconducting Flux Qubit | NTT R&D Website
superconducting quantum circuits quantum sensing biosensing In the race to develop superconducting quantum
https://www.rd.ntt/e/research/JN202403_25274.html
List of Visitors’ Talks
. Peter Smith (University of Southampton, U.K.) Integrated photonic circuits for quantum information
https://www.rd.ntt/e/brl/result/activities/file/report16/data03E.html
Observation of quantum-mechanical ultrafast coherent oscillations in a silicon single-electron device|NTT Basic Research Laboratories | NTT R&D Website
ultrafast quantum-bit*2 operation and high-sensitivity electromagnetic-field sensing*3. NTT has been
https://www.rd.ntt/e/brl/latesttopics/2019/11/latest_topics_201911051001.html
Quantum Information Technology Based on Superconducting Quantum Circuits | NTT R&D Website
circuits quantum sensing quantum computers The research on superconducting quantum circuits has expanded
https://www.rd.ntt/e/research/JN202304_21572.html
Approaching Quantum Error Correction Using Bosonic Qubits While Looking Beyond the Red Ocean of a Research Field | NTT R&D Website
expected to improve the accuracy of quantum sensing. A superconducting flux qubit has two quantum states
https://www.rd.ntt/e/research/JN202409_29284.html
List of Award Winners
Scientists’ Prize H. Okamoto A study of the quantum nanomechanical sensing technology Apr. 15, 2014
https://www.rd.ntt/e/brl/result/activities/file/report14/data04E.html
Force/Displacement Detection Using Electron Interference
cantilevers, which is one of the most important electrical methods, using the quantum effects in semiconductor
https://www.rd.ntt/e/brl/result/activities/file/report04/report18.html
Force and Displacement Sensing Using the Superconducting Proximity Effect
Force and Displacement Sensing Using the Superconducting Proximity Effect Force and Displacement
https://www.rd.ntt/e/brl/result/activities/file/report05/report17.html
NTT Basic Research Laboratories Theoretical quantum physics research group / Reseach
sensing, to quantum chemistry and quantum computation. We are investigating how to create quantum
https://www.rd.ntt/brl/group_introduction/ryouron-g/research.html
Electron Phase Sensing in a High Q Mechanical Resonator
Electron Phase Sensing in a High Q Mechanical Resonator Electron Phase Sensing in a High Q
https://www.rd.ntt/e/brl/result/activities/file/report06/report16.html
Improving the lifetime of an electron spin in diamond for quantum sensing technology|NTT Basic Research Laboratories | NTT R&D Website
Improving the lifetime of an electron spin in diamond for quantum sensing technology|NTT Basic
https://www.rd.ntt/e/brl/latesttopics/2015/04/latest_topics_201504131111.html
Optical-lattice-clock-network Technology for Gravitational Potential Sensing | NTT R&D Website
magnitude, enabling quantum sensing of gravitational potential equivalent to an altitude difference of only
https://www.rd.ntt/e/research/JN202304_21619.html
Dilemma between Quantum Speedup and Computational Reliability-Overcoming Errors with Efficient Verification Methods for Quantum Computing | NTT R&D Website
our verification method to quantum sensing[3]and experimentally demonstrated it in a small-scale
https://www.rd.ntt/e/research/JN202308_22757.html
Achieving IOWN/6G and Creating New Value with World-leading Technologies | NTT R&D Website
optical transport network that provides secure network services using post-quantum cryptography (PQC), and
https://www.rd.ntt/e/research/JN202405_26173.html