[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"$fGOa84UJve-n0bKYHCuhlVYJ7eeh_RY5CnCbqzymIFhg":3},{"lesson":4},{"id":5,"slug":6,"article_id":7,"title":8,"body":9,"prevention":10,"framework_refs":11,"status":17,"created_at":18,"published_at":19,"article":20,"tags":24,"podcasts":37},"a37c4cef-d37a-48b8-8b1a-887f533f3ef8","quantum-computing-accelerates-need-for-cryptographic-transition","9b20cb85-2628-44bb-8c05-6c1e2740738c","Quantum Computing Accelerates Need for Cryptographic Transition","Google's accelerated timeline for post-quantum cryptography highlights a critical vulnerability in current encryption methods that could be exploited by quantum computers sooner than expected. The threat of 'store-now-decrypt-later' attacks means adversaries are likely already collecting encrypted data with the intention of decrypting it once quantum computing capabilities advance. Organizations that delay transitioning to quantum-resistant encryption risk having their current encrypted data retroactively compromised. This represents a unique vulnerability where the threat timeline has compressed, requiring immediate action despite the technology not yet being fully operational.","**Immediate actions:**\n- Organizations should immediately begin inventorying their cryptographic assets and developing migration plans to post-quantum cryptography standards like NIST's ML-DSA signatures\n- They should prioritize protecting their most sensitive data first and implement cryptographic agility frameworks that allow for rapid algorithm updates\n\n**Long-term improvements:**\n- organizations should consider implementing hybrid classical-quantum resistant encryption for critical data and establish shorter certificate lifecycles to enable faster cryptographic transitions\n\n**Detection measures:**\n- Regular vulnerability assessments should now include quantum readiness evaluations, and security teams should monitor NIST's post-quantum cryptography standardization process",[12,13,14,15,16],"NIST CSF PR.DS-1","NIST CSF PR.DS-2","CIS Control 3","NIST SP 800-208","ISO 27001 A.10.1.1","published","2026-03-27T19:08:59.796275+00:00","2026-03-27T19:08:59.665+00:00",{"id":7,"url":21,"slug":22,"title":23},"https:\u002F\u002Fhackread.com\u002Fgoogle-2029-deadline-quantum-computers-encryption\u002F","google-sets-2029-deadline-as-quantum-computers-threaten-encryption","Google Sets 2029 Deadline as Quantum Computers Threaten Encryption",[25,31],{"id":26,"name":27,"slug":28,"description":29,"color":30},"05757c8d-6b93-4194-b35d-7359e7d33b0e","Vulnerability Management","vulnerability-management","Missing scans, no risk prioritization","#fb923c",{"id":32,"name":33,"slug":34,"description":35,"color":36},"c8b843a5-d5a7-41d1-8d3b-cabded09d2ef","Data Protection","data-protection","Unencrypted data, missing DLP, poor classification","#3b82f6",[38],{"id":39,"date":40,"edition":41,"title":42,"audio_url":43},"af070721-ce6e-4891-aade-1ba2afd7fb52","2026-03-28","morning","ThreatNoir Weekend Brief — March 28","https:\u002F\u002Fcdn.threatnoir.com\u002Fpodcasts\u002F2026-03-28\u002Fthreatnoir-morning-brief-2026-03-28.mp3"]