Quantum hash function using discrete-time quantum walk on Hanoi network
Quantum walk-based hash functions have attracted a lot of attention in recent years because of its faster execution time and robust resistance against attacks compared to classical hash functions. It has been observed that the underlying graph and the way message controls the quantum walk iteration steps play a crucial role for the robustness of the ...
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On the equivalence between classically verifiable position verification and certified randomness. [PDF]
Kaleoglu F +6 more
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Design and evaluation of a resilient IBN architecture: Integrating post-quantum cryptography with adaptive threat detection using machine learning. [PDF]
Roy KS +4 more
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Quantum cryptanalysis of hash and claw-free functions [PDF]
Gilles Brassard +2 more
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Post-Quantum Revocable Linkable Ring Signature Scheme Based on SPHINCS+ for V2G Scenarios. [PDF]
Liu S, Du YN, Wang XA, Hu X, Su HE.
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A Lightweight Hybrid Authentication and Key Agreement Protocol for Decentralized Device-to-Device Communication with Post-Quantum Confidentiality. [PDF]
Savón-Berenguer A +3 more
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Hash Functions in a Post-Quantum World
This thesis is dedicated to the study of various applications of hash functions in cryptography. The main contribution of this thesis is an analysis of various hash-based signature schemes. Foremost, we achieve a tight proof of security for SPHINCS+, also known as SLH-DSA, which has been selected by NIST as a standard for post-quantum signature schemes.
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QRBT: Quantum Driven Reinforcement Learning for Scalable Blockchain Transaction Processing. [PDF]
Lella KK, Mallu SRK.
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BBAS: A blockchain-based authentication system for e-health with multi-factor authentication, access control, and post-quantum security. [PDF]
Latif R +4 more
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Scalable Distributed Memory Implementation of the Quasi-Adiabatic Propagator Path Integral. [PDF]
Ovcharenko R, Xu X, Fingerhut BP.
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