The main objective of this technical group is to develop field-deployable prototypes of hybrid magnetometers and sensors, for measurement of absolute values of ambient fields and detection of fine anomalies with sensitivities far beyond the state-of-the-art parameters. It aims to integrate a range of sensing platforms for development of a cascaded sensing scheme that can operate over nine decades of precision. This includes developing sensor control and network training algorithms along with visualization software, all in compact and robust packaging for operation in ambient conditions.
The group also focuses on continuous evaluation of device performance through sophisticated field testing and close collaboration with partners in strategic and medical applications. It further explores new schemes for quantum-enhanced metrology, leveraging many-body physics to improve sensitivity, scalability, and real-world reliability.
Develop field-deployable prototypes of hybrid magnetometers and sensors
Measure absolute values of ambient fields and detect fine anomalies with high sensitivity
Integrate sensing platforms for cascaded schemes across nine decades of precision
Develop sensor control and network training algorithms with visualization software
Package devices for compact and robust ambient operation
Mapping mineral deposits, groundwater, and oil reserves
Enabling GPS-free navigation systems for aerospace and defense
Detecting biomagnetic signals from the brain and heart for diagnostics
Magnetic anomaly detection for surveillance and underground object identification
Precision measurement tools for laboratories and calibration centers
The Atomic Magnetometry Technical Group is developing hybrid magnetometers that combine multiple sensing platforms and control algorithms to achieve precision over nine decades. The group’s research links advanced quantum sensing principles with real-world applications in geophysics, navigation, biomedical diagnostics, and national security.
Oil, gas, and mineral exploration firms
Defense R&D organizations, avionics companies
Hospitals, neuro-imaging, and cardiac sensor developers
DRDO, ISRO, BARC, and national security establishments
Calibration and national standards institutions
Build prototypes of NV microscopes; establish diamond fabrication/testing infrastructure.
Create portable NV sensors; set national benchmarks; enable industry transfer.
Scale production of diamond sensors; position India as a global leader in NV-based sensing.

Advancing hybrid atomic sensing across multiple quantum platforms
Deploying precision sensing tools for energy, defense, and healthcare sectors
Building indigenous quantum sensor companies for industrial use
Contributing to national self-reliance in navigation and sensing infrastructure
Partnering with international magnetometry research and metrology bodies
