cryptography

NIST’s Andrew Regenscheid Explains the Transition to Post-Quantum Cryptography

NIST’s Andrew Regenscheid Explains the Transition to Post-Quantum Cryptography

Curator's Take

AI Commentary

This article matters because it puts a human face on the imminent shift from classical to post‑quantum cryptography—a transition that will safeguard everything from banking apps to IoT devices once large‑scale quantum computers become viable. Regenscheid’s explanation ties directly into NIST’s ongoing standardization effort, which is now in its final draft stage after years of candidate algorithms being vetted against both security and implementation efficiency. Readers should care because the timeline for adopting these new primitives is tightening; organizations that delay risk costly retrofits or exposure once quantum‑capable adversaries appear, even though practical deployment will still require careful integration and legacy compatibility testing.

— Mark Eatherly

Summary

Insider Brief Press release – From our bank accounts to smartphones, all our sensitive data and devices are protected with a technology known as cryptography. Present-day cryptography essentially uses a very challenging set of math problems that are nearly impossible for current computers to solve. These math problems act as a “lock” to keep hackers […]