Blog / Quantum Cryptography
Quantum Cryptography
164 articles in this category.
Hardware-Aware Quantum Kernels: Critical GNN Design Breakthrough
Graph neural networks now design quantum kernels that survive NISQ noise. What this means for enterprise quantum readiness. Read the technical breakdown.
Lean 4 Proof Replaces 33M SMT Checks in PQC Hardware Masking
New Lean 4 proof verifies ML-KEM and ML-DSA hardware masking universally, shrinking the trusted base from Z3, CVC5, and Python. Ready to audit yours?
Quantum Cloud Pricing: Game Theory Bounds Costs at 1.33x Optimal
New QC-PRAGM model caps quantum cloud client overcharging at 4/3 optimal. What CISOs need to know about distributed quantum compute pricing.
LiDMaS+ Benchmark: BP Decoder Cuts QEC Load 50% on Xanadu
New LiDMaS+ architecture benchmarks 4 quantum decoders on Xanadu hardware. BP reduces correction volume 50.4% vs MWPM. See the results.
PQ X.509 Assurance: Why Parse-Time Validation Fails ML-KEM
New framework detects 10/10 invalid ML-KEM certificates where JZLint catches only 5. See why your PQC validation pipeline needs a rebuild.
Satellite QKD Protocols: BB84 vs BBM92 for LEO Secure Links
New LEO satellite QKD analysis shows downlinks beat uplinks on QBER and key rate. Which protocol should your security team prioritize?
QLDPC Decoder Breakthrough: 10x Speedup Cuts FTQC Timeline
New BP preprocessing delivers 10x faster QLDPC decoding on bivariate bicycle codes. What CISOs must do before fault-tolerant quantum arrives.
QRAM Breakthrough: Solving Quantum ML's Data Loading Bottleneck
New Bucket Brigade QRAM framework cuts quantum state preparation to O(log²(MN)). What it means for your PQC migration roadmap.
QuIKS Cuts QKD Key Buffer Size 10x: Critical Network Advance
QuIKS delivers near-zero latency key supply for QKD networks with 10x smaller buffers. What CISOs planning quantum-safe infrastructure must know now.
Neural Decoders Slash Quantum Error Rates 17x: PQC Urgency
New neural decoder cuts logical error rates 17x and boosts throughput 10,000x. What this means for your post-quantum migration timeline.
Optimisation-Free RQAOA: Critical Path to Quantum Advantage
New optimisation-free RQAOA eliminates costly variational tuning for combinatorial problems like BPSP. What does this mean for your quantum roadmap?
QAOA Compilation Breakthrough: Sparsification Cuts Ion-Trap Noise
New QAOA compilation technique reduces trapped-ion pulse count from O(n²) to O(n log n). What does it mean for quantum-ready enterprises?