MicroAlgo Integrates Lattice Cryptography into LSQb Algorithm to Harden Quantum Image Encryption
MLGO•MicroAlgo has integrated lattice-based cryptography into its LSQb algorithm to provide quantum image encryption with enhanced resistance against quantum attacks, employing advanced preprocessing, bit-level embedding and error correction. The system secures information transmission over quantum networks by encrypting and decrypting images using complex lattice-based algorithms.
1. Development of Lattice-Based Quantum Encryption
MicroAlgo has developed a quantum encryption module by embedding lattice cryptography into its proprietary LSQb algorithm. This integration enhances resistance to quantum computing attacks by leveraging the complex mathematical structure of lattice-based cryptography, marking a significant upgrade over standalone LSQb implementations.
2. Technical Process and Workflow
The system begins with quantum image preprocessing—denoising, enhancement and format conversion—followed by encoding secret data into least significant quantum bits. Post-embedding, the image is encrypted using a lattice-based algorithm, then transmitted via quantum networks with error correction and redundant encoding for integrity before decryption at the target node.
3. Applications and Future Integration
This technology is designed for secure quantum information hiding and transmission across quantum networks, protecting sensitive data against future quantum threats. MicroAlgo plans to integrate this solution with other quantum information processing systems to offer comprehensive, high-security services for enterprise and defense sectors.




