

The performance and reliability of quantum sensors and devices is dependent on the length of time the underlying quantum states can remain coherent. Quantum sensors are measuring device that takes advantage of quantum correlations, such as states in a quantum superposition or entanglement, for better sensitivity and resolution than can be obtained by classical systems. Another important area is quantum computing based on quantum bits, or qubits, which can represent a one, a zero, or a coherent linear combination of one and zero, could open routes to new kinds of computation. The emerging quantum revolution offer revolutionary capabilities for military from quantum creptography for hack proof communications to High-precision atomic clocks that can enable timekeeping for navigation and communications with GPS-like performance even in GPS-denied environments.
DARPA PROGRAM AIMS TO ATOMIC CLOCKS FULL
Quantum programming languages, software tools and Quantum frameworks plays a critical role in exploiting the full potential of quantum computing systems in AI, machine learning, big data science, and optimisation.


Majorana Fermions: A New Class of Robust Qubits for Quantum Computing.How the Department of Defense’s DMSMS Management Mitigates Obsolescence and Material Shortages.Capacitors: The Backbone of Modern Electronics – Exploring Technologies and Market Trends.Optical Modules and Transceivers: Unleashing the Power of High-Speed Optical Communications”.Soft Robotics Unleashed: Exploring the Future of Flexible Machines in Everyday Life.Metamaterials Revolution: Empowering Superlenses, Superfast Optical Networks, EMI Suppression, and Wireless Charging.Unleashing the Power of Energy Harvesting: Technology, Applications, and Market Dynamics.Unleashing the Potential of Indium Phosphide (InP) Technology: A Look into the Market and Applications.
