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ZKBdf: A ZKBoo-Based Quantum-Secure Verifiable Delay Function with Prover-Secret
Conference proceeding   Peer reviewed

ZKBdf: A ZKBoo-Based Quantum-Secure Verifiable Delay Function with Prover-Secret

Teik Guan Tan, Vishal Sharma, Zeng Peng Li, Pawel Szalachowski and Jianying Zhou
APPLIED CRYPTOGRAPHY AND NETWORK SECURITY WORKSHOPS, ACNS 2023 SATELLITE WORKSHOPS, ADSC 2023, AIBLOCK 2023, AIHWS 2023, AIOTS 2023, CIMSS 2023, CLOUD S&P 2023, SCI 2023, SECMT 2023, SIMLA 2023, Vol.13907, pp.530-550
Lecture Notes in Computer Science
01/01/2023

Abstract

Computer Science Computer Science, Artificial Intelligence Computer Science, Software Engineering Computer Science, Theory & Methods Science & Technology Technology Telecommunications
Since the formalization of Verifiable Delay Functions (VDF) by Boneh et al. in 2018, VDFs have been adopted for use in blockchain consensus protocols and random beacon implementations. However, the impending threat to VDF-based applications comes in the form of Shor's algorithm running on quantum computers in the future which can break the discrete logarithm and integer factorization problems that existing VDFs are based on. Clearly, there is a need for quantum-secure VDFs. In this paper, we propose ZKBdf, which makes use of ZKBoo, a zero-knowledge proof system for verifiable computation, as the basis for realizing a quantum-secure VDF. We describe the algorithm, provide the security proofs, implement the scheme and measure the execution and size requirements. In addition, as ZKBdf extends the standard VDF with an extra "Prover-secret" feature, new VDF use-cases are also explored.

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