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A dynamic quantum-resistant code-based public key encryption scheme

  • 01-11-2025
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Abstract

This article delves into the development of a dynamic quantum-resistant code-based public key encryption scheme, addressing the vulnerabilities of current cryptographic methods in the face of quantum computing advancements. The authors propose a method that introduces dynamicity in the choice of underlying codes, leveraging the relationships between various linear codes to enhance security. The article covers several key topics, including the preliminaries of code-based cryptography, the relationship between different linear codes, and the proposed system's algorithm. A notable aspect of this work is the detailed analysis of the system's resistance to various attacks, such as structural and decoding attacks. The authors also provide a comparative study of the performance parameters of the proposed system with existing McEliece variants. The article concludes with a discussion on the limitations of the work and potential areas for future research, offering a comprehensive overview of the proposed dynamic code-based encryption scheme and its implications for post-quantum cryptography.

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Title
A dynamic quantum-resistant code-based public key encryption scheme
Authors
Pratheeksha Raju
T. Chithralekha
Kalpana Singh
G. Ganeshvani
Muttukrishnan Rajarajan
Publication date
01-11-2025
Publisher
Springer US
Published in
Quantum Information Processing / Issue 11/2025
Print ISSN: 1570-0755
Electronic ISSN: 1573-1332
DOI
https://doi.org/10.1007/s11128-025-04976-3
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