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Main Authors: Srivastava, Vikas, Roy, Debasish, Mesnager, Sihem, Kundu, Nibedita, Debnath, Sumit Kumar, Mukhopadhyay, Sourav
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2512.17613
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author Srivastava, Vikas
Roy, Debasish
Mesnager, Sihem
Kundu, Nibedita
Debnath, Sumit Kumar
Mukhopadhyay, Sourav
author_facet Srivastava, Vikas
Roy, Debasish
Mesnager, Sihem
Kundu, Nibedita
Debnath, Sumit Kumar
Mukhopadhyay, Sourav
contents Voting is a primary democratic activity through which voters select representatives or approve policies. Conventional paper ballot elections have several drawbacks that might compromise the fairness, effectiveness, and accessibility of the voting process. Therefore, there is an increasing need to design safer, effective, and easily accessible alternatives. E-Voting is one such solution that uses digital tools to simplify voting. Existing state-of-the-art designs for secure E-Voting are based on number-theoretic hardness assumptions. These designs are no longer secure due to quantum algorithms such as Shor's algorithm. We present the design and analysis of \textit{first} post-quantum secure end-to-end verifiable E-Voting protocol based on multivariate polynomials to address this issue. The security of our proposed design depends on the hardness of the MQ problem, which is an NP-hard problem. We present a simple yet efficient design involving only standard cryptographic primitives as building blocks.
format Preprint
id arxiv_https___arxiv_org_abs_2512_17613
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Post-Quantum Secure End-to-End Verifiable E-Voting Protocol Based on Multivariate Polynomials
Srivastava, Vikas
Roy, Debasish
Mesnager, Sihem
Kundu, Nibedita
Debnath, Sumit Kumar
Mukhopadhyay, Sourav
Cryptography and Security
Voting is a primary democratic activity through which voters select representatives or approve policies. Conventional paper ballot elections have several drawbacks that might compromise the fairness, effectiveness, and accessibility of the voting process. Therefore, there is an increasing need to design safer, effective, and easily accessible alternatives. E-Voting is one such solution that uses digital tools to simplify voting. Existing state-of-the-art designs for secure E-Voting are based on number-theoretic hardness assumptions. These designs are no longer secure due to quantum algorithms such as Shor's algorithm. We present the design and analysis of \textit{first} post-quantum secure end-to-end verifiable E-Voting protocol based on multivariate polynomials to address this issue. The security of our proposed design depends on the hardness of the MQ problem, which is an NP-hard problem. We present a simple yet efficient design involving only standard cryptographic primitives as building blocks.
title A Post-Quantum Secure End-to-End Verifiable E-Voting Protocol Based on Multivariate Polynomials
topic Cryptography and Security
url https://arxiv.org/abs/2512.17613