QuantumResist: integrating shor’s algorithm, lattice-based cryptography, and quantum error correction for enhanced secure communication in post-quantum cryptography
摘要
QuantumResist brings a new and improved way to secure communication in the quantum computing age with its use of lattice-based cryptography, quantum error correction (QEC), and experiments based on Shor’s algorithm. To address the issues, the framework uses RLWE as it is a powerful encryption algorithm that prevents attacks from quantum computers. QEC is used to help steady quantum computation and make the cryptographic process more accurate, even when the quantum environment has noise. Separately, QuantumResist uses SageMath to simulate Shor’s algorithm, making it possible to check the efficiency of its defenses without having to depend on Shor’s algorithm for real encryption tasks. Moreover, the architecture provides more security as Grover’s algorithm takes effect by using longer keys and making the hardware stronger. Research demonstrates that modern post-quantum schemes are much faster and can fix more errors when used instead of outdated solutions. Thanks to careful design, QuantumResist is compatible with today’s IoT and cloud solutions and provides secure and strong encryption for businesses.