Quantum computing represents an existential threat to current encryption standards—but recent progress is changing that calculus. A major blockchain infrastructure provider just unveiled significant breakthroughs in post-quantum cryptography, slashing the physical qubit requirements for critical algorithms by 20x. This isn't theoretical anymore. As networks race to fortify themselves against quantum-era attacks, these efficiency gains become game-changers for both scalability and security. The 2025 roadmap signals that lattice-based and other quantum-resistant protocols are moving from laboratories into real-world deployment. For anyone building or securing decentralized systems, this matters: next-gen cryptography isn't coming—it's already here.
This page may contain third-party content, which is provided for information purposes only (not representations/warranties) and should not be considered as an endorsement of its views by Gate, nor as financial or professional advice. See Disclaimer for details.
7 Likes
Reward
7
5
Repost
Share
Comment
0/400
NotFinancialAdvice
· 4h ago
20x optimization? That's the real breakthrough. Finally, no more worries about quantum computing being so sluggish.
View OriginalReply0
AllInAlice
· 4h ago
20x efficiency boost? Now the quantum threat isn't so scary anymore. Someone has finally brought this from paper to reality.
View OriginalReply0
CryptoPhoenix
· 4h ago
The hurdle of quantum computing has finally been answered. A 20-fold increase in efficiency—this is not just on paper, but a real technological breakthrough. The anxiety about the bottom range should be put aside, as the future security is being built step by step.
View OriginalReply0
PhantomMiner
· 4h ago
20x optimization? Now the quantum threat isn't as scary, creators can breathe a sigh of relief.
View OriginalReply0
FundingMartyr
· 4h ago
Damn, a 20x efficiency boost, isn't that bragging? Finally, someone has made quantum stuff more reliable.
Quantum computing represents an existential threat to current encryption standards—but recent progress is changing that calculus. A major blockchain infrastructure provider just unveiled significant breakthroughs in post-quantum cryptography, slashing the physical qubit requirements for critical algorithms by 20x. This isn't theoretical anymore. As networks race to fortify themselves against quantum-era attacks, these efficiency gains become game-changers for both scalability and security. The 2025 roadmap signals that lattice-based and other quantum-resistant protocols are moving from laboratories into real-world deployment. For anyone building or securing decentralized systems, this matters: next-gen cryptography isn't coming—it's already here.