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Explore Quantum Hardware with expert insights, use cases, and solutions. Learn how Quantum Hardware can enhance your cybersecurity and protect sensitive data.
Find more information about QNu Labs QNu Labs Powers Global’s First Quantum-Safe Satellite Launch, Redefining Space Security. Download our Quantum Cryptography Case Studies for Free.
Digital Quantum Key Distribution (dQKD): Scale quantum-safe keys globally at 1,200 keys/hour. Overcome hardware QKD distance limits using NIST ML-KEM and QNu’s HODOS algorithm.
Explore Hodos (QNu Labs Post-Quantum Cryptography Platform), its cryptographic mechanism, advantages, and importance in quantum-safe encryption systems.
BISAG-N and QNu Labs sign MoU to deploy quantum-resilient cybersecurity across India's critical infrastructure and defence networks. Announced with Union Minister Jitin Prasada and MeitY Secretary S. Krishnan on 28 Jan 2026.
Explore Post-Quantum Cryptography (PQC), its cryptographic mechanism, advantages, and importance in quantum-safe encryption systems.
Is your business ready for quantum computers breaking today’s encryption? Learn how crypto agility and proactive risk management can protect critical data, ensure compliance, and keep you ahead of evolving cyber threats.
Quantum computers use the laws of quantum mechanics to process information in quantum bits or qubits. Qubits can exist in multiple states at the same time (called quantum superposition). This property allows quantum computers to process data and solve problems exponentially faster than classical computers.
Quantum technology has been the most revolutionary phenomenon of the 21st century. Quantum computing hogs the limelight for its immense processing power and the ability to transform many areas of our technological life. It also has the potential to tackle some of our most pressing global issues, from climate change to food security.
In cybersecurity, where data protection is paramount, traditional cryptographic methods have long been the stalwart guardians of sensitive information. However, as computing power advances, so too do the tools available to potential attackers. In the ever-evolving landscape, the emergence of quantum cryptography offers a promising solution to the challenges of secure communication in the digital age.
Singapore has committed over S$400 million through 2030 to quantum technology, with a clear focus on security.
Explore Quantum Hsm (Hardware Security Module) with expert insights, use cases, and solutions. Learn how Quantum Hsm (Hardware Security Module) can enhance your cybersecurity and protect sensitive data.
Experience QKDN, India’s first software-defined quantum network orchestration platform. Designed for national-scale security, it offers centralized control and unmatched operational resilience for governments and enterprises.
Quantum tunnelling is one of the most intriguing phenomena in quantum physics. Tunnelling may appear to have little relevance to everyday life but it is a fundamental process of nature that is responsible for many things on which life itself is dependent.
The landscape of digital security is constantly evolving and threats loom large. But, the emergence of quantum security provides hope. Quantum security represents a paradigm shift in the way we safeguard our digital infrastructure against increasingly sophisticated attacks.
In quantum mechanics, the phenomenon of quantum entanglement stands out as both perplexing and fascinating. It is one of the iconic principles of quantum physics and probably the bedrock of new-age quantum technologies.
We are witnessing the second quantum revolution. We are, for the first time, exploring the possible applications of quantum superposition and quantum entanglement. Quantum communication is one of the important use cases of quantum mechanics. Building a large and fully-functional quantum network will determine the commercial success of quantum communication.
Superposition is one of the most iconic concepts in quantum physics. The principle says that the particles such as electrons can exist in multiple positions simultaneously. For example, imagine a coin tossed in the air—it is not in a definite state of heads or tails while in the air until it is observed. Similarly, sub-atomic particles in quantum superposition exist in all possible states until they are measured.
QNu Labs provides ✓Quantum Key Distribution (QKD) solutions for enhanced data security & privacy. Learn how QKD ensures secure communication.
At the core of quantum mechanics is the idea that particles, such as electrons and photons, can exist in multiple states simultaneously. Unlike classical physics, where an object can only exist in one state at a time, quantum superposition allows particles to exist in a combination of states.
Explore Digital QKD (DQKD), its cryptographic mechanism, advantages, and importance in quantum-safe encryption systems.
India’s 1st quantum-safe drone platform with NIST PQC, AES-256, tamper-proof hardware & fast encryption for secure video, telemetry & command. Secure UAVs now.
QNu Labs ✓Post-Quantum Cryptography (PQC) algorithm meets NIST standards & easily integrates with servers, mobiles, FPGA, PCIe cards, and more
In computer science and technology, the term “quantum computing” has emerged as a buzzword, capturing the imagination of scientists, engineers, and enthusiasts alike. But what exactly is a quantum computer, and how does it differ from classical computers?
Find more information about QNu Labs Guide: QOSMOS - Entropy as a Service and How it Works?. Get more Quantum Cryptography Guide from QNu Labs.