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Quantum computing is a catalyst for rethinking how organizations govern, secure and manage cryptographic systems.
As NIST rolls out advanced PQC standards to address the ‘Harvest now, decrypt later’ threat, a new report suggests that a ...
Post-quantum cryptography – algorithms designed to be secure against classical and quantum computer attacks – is the response ...
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Quantum Computers and Encryption: Will They Be the End of Cybersecurity?
Quantum computing has been hailed as the next frontier in technology, capable of solving problems that classical computers ...
Threat researchers discovered the first AI-powered ransomware, called PromptLock, that uses Lua scripts to steal and encrypt ...
ESET uncovers AI-powered PromptLock ransomware using OpenAI gpt-oss:20b model, complicating detection with variable Lua ...
Increasing computing power will soon make existing encryption algorithms ineffective. Here’s how the industry is responding and how your agency can benefit from new encryption innovations today.
From anonymization algorithms to zero-knowledge proofs, our no-nonsense glossary unpacks the encryption keys, clean rooms and ...
Performance Overhead: Encryption processes can slow down devices, especially with resource-intensive algorithms. Data Recovery Issues: Loss of encryption keys can make data permanently inaccessible.
Researchers found that an encryption algorithm likely used by law enforcement and special forces can have weaknesses that ...
Once quantum computers become functional, experts warn, they could perform calculations exponentially faster than classical computers—potentially enabling them to destroy the encryption that ...
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