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Preparing for Post-Quantum Cryptography Print

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The transition that actually matters.

WHAT THE THREAT IS

A sufficiently large quantum computer breaking the public-key algorithms in use today.

WHAT IS AFFECTED

Key exchange in encrypted connections Digital signatures Certificates Anything relying on the difficulty of factoring or discrete logarithms

WHAT IS LESS AFFECTED

Symmetric encryption, which needs larger keys but remains sound Hash functions, similarly

WHAT HARVEST-NOW-DECRYPT-LATER MEANS

Capturing encrypted traffic today, to decrypt when capability exists.

WHY THAT MATTERS NOW

Data with a long secrecy requirement is already at risk.

WHAT POST-QUANTUM ALGORITHMS ARE

Classical algorithms believed resistant to quantum attack.

WHAT HAS HAPPENED

Standards bodies have selected algorithms, and adoption has begun.

WHAT HYBRID DEPLOYMENT MEANS

Using both a traditional and a post-quantum algorithm together.

WHY

If one is broken, the other still protects.

WHAT TO DO NOW

Inventory where public-key cryptography is used Establish what has a long secrecy requirement Prefer systems that can change algorithms without redesign Follow vendor support as it arrives

WHAT NOT TO DO

Adopt unproven algorithms independently.


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