Comparing Quantum-Resistant Cryptographic Algorithms for Securing Next-Generation Communications

Satish S. Banait, Komal Baburao Umare, Madhumay Sen, Sandeep Kumar, Parikshit Narendra Mahalle, Jambi Ratna Raja Kumar · 2024

Abstract: Traditional encryption systems, like RSA and ECC (Elliptic Curve Cryptography), are in big danger because quantum computing is getting better and faster. These systems are the foundation of safe messaging today. Using algorithms like Shor's and Grover's, quantum computers might be able to break many of the most common encryption methods. So, people who work with cryptography are doing a lot of study on quantum-resistant cryptography (QRC) to come up with methods that will still work even when quantum computers are used. This essay looks at and rates different quantum- resistant encryption methods with the main goal of finding the best ones for protecting the next generation of communication systems. It looks at various types of algorithms, such as hash-based cryptography, code-based cryptography, multivariate quadratic equations, and lattice-based cryptography. It rates their pros and cons in terms of security, computational efficiency, and usefulness in real life. The study also talks about the problems and trade-offs that come with switching to quantum-resistant cryptography. For example, some methods need very large key sizes and a lot of computing power. We look at what groups like the National Institute of Standards and Technology (NIST) are doing to make post-quantum cryptography methods more uniform. Lastly, the study looks into the future of safe communication and stresses how important it is to use mixed cryptosystems that combine traditional methods with algorithms that can't be broken by quantum computers. To keep interactions safe in a world after quantum computing, strong, flexible, and effective encryption methods will become more and more important.

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