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Quantum computing will make cryptography obsolete. But computer scientists are working to make them unhackable.
Quantum computers are coming. And when they arrive, they are going to upend the way we protect sensitive data. Unlike classical computers, quantum computers harness quantum mechanical effects — like ...
The post-quantum cryptography market is expanding rapidly as governments and enterprises shift toward quantum-resistant encryption, with the U.S. market projected to grow from USD 0.48 billion in ...
In the end, critical infrastructure’s biggest quantum risk is the outdated, manual trust models of today. Only by replacing ...
Aptos developers have proposed AIP-137 to add optional post-quantum signatures, aiming to prepare the network for future quantum-related cryptographic risks.
Claim your complimentary copy of "Becoming Quantum Safe: Protect Your Business and Mitigate Risks with Post-Quantum ...
Every era of technology faces a turning point. For cybersecurity, that moment has arrived. Quantum computing is evolving rapidly from academic theory to engineering reality, and its impact on modern ...
If you're thinking about Bitcoin in 2026, these are 3 themes to follow to be prepared to what the new year could bring to its ...
Explore post-quantum cryptography in federated learning for Model Context Protocol training. Learn about quantum vulnerabilities, security measures, and real-world applications.
Breakthroughs in the quantum space are coming fast, and threats once dismissed as speculative now seem inevitable. For industries that rely on trust and long-lived devices, the transition to ...
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Solana prepares for the quantum era with new cryptography trials
Solana developers are testing quantum-resistant cryptography to protect the network from future quantum computing threats.
A successful quantum-safe strategy is built on a unified security platform, not on a collection of point solutions. It prioritizes crypto agility over disruptive replacement and it begins with deep, ...
In December 2024, Google’s Willow chip became the first quantum processor to demonstrate “below threshold” error correction.
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