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The Quantum Sensing and Metrology Thematic Hub serves as a dedicated platform aimed at promoting advancements in the domain of quantum sensing and metrology.

This field utilizes principles of quantum mechanics to significantly improve the accuracy and sensitivity of measurements. By leveraging the distinctive characteristics of quantum systems, including superposition and entanglement, quantum sensing achieves measurement precision that surpasses classical capabilities. Quantum sensors are capable of identifying minute variations in physical parameters such as time, magnetic fields, electric fields, temperature, and acceleration with exceptional accuracy.

Hub Icon IIT Bombay (Main Hub)
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Thematic Hub
IIT Bombay

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Objective

This vertical is dedicated to the development of high-precision quantum sensors and metrology devices for scientific, industrial, and defence applications. The specific objectives include:

Developing High-Sensitivity Atomic Magnetometers

Achieve femto-Tesla/sqrt (Hz) sensitivity in atomic systems and better than pico-Tesla/sqrt (Hz) in NV-centres for advanced sensing applications.

Precision Timing and Navigation

Develop atomic clocks with fractional instability of 10⁻¹⁹ to support ultra-precise timing in navigation, defence, and scientific research.

Quantum Gravimetry and Inertial Sensing

Design highly sensitive quantum gravimeters with accuracy better than 100 nano-meter/second² for geophysical applications.

Quantum-Enhanced Imaging

Utilize quantum properties to develop high-resolution imaging systems for biomedical, security, and astronomical applications.

Advanced Quantum Metrology

Improve measurement standards using quantum-enhanced techniques for precision in scientific and industrial applications.

Developing NMR Quantum Sensors

Enhance nuclear magnetic resonance (NMR) sensor technology for medical diagnostics and material analysis.

Technical Groups

Quantum Sensing & Metrology harnesses quantum mechanics to perform computations far beyond the reach of classical computers.

Field-deployable quantum-enhanced sensors on integrated hybrid platform

Design and development of quantum entanglement-enhanced imaging systems

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