Abstract
Lattice-based cryptography has emerged as a powerful paradigm for constructing secure cryptographic primitives, offering resistance to quantum attacks and providing a versatile framework for building post-quantum cryptographic systems. This research paper provides an in-depth exploration of lattice-based cryptography, focusing specifically on its applications for problems based on Ring Learning with Errors (RLWE). We analyze the fundamental concepts of lattice theory, delve into the RLWE problem, and highlight the security properties and challenges associated with lattice-based schemes. Furthermore, we discuss various real-world applications of lattice-based cryptography, demonstrating its potential for secure communication, privacy-preserving protocols, and post-quantum cryptography.
Cite
CITATION STYLE
Yadav, S. (2023). An Extensive Study on Lattice-Based Cryptography and its Applications for RLWE-Based Problems. Universal Research Reports, 10(3), 104–110. https://doi.org/10.36676/urr.2023-v10i3-014
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