Unconditional Proofs-of-Work and Other Possibilities of Thermodynamic Cryptography
Quantum Physics
2022-10-25 v1 Cryptography and Security
Abstract
In line with advances in recent years about realizing cryptographic functionalities in an information-theoretically secure way from physical phenomena and laws, we propose here to obtain useful tasks from the sole assumption of limited free energy. Specifically, based on that assumption -- resulting in a setting loosely related to Maurer's bounded-storage model -- we derive protocols for unconditional proofs-of-thermodynamical-work, secret sharing of free energy, unforgeable money, and proofs-of-position. While our schemes can be considered classical and not quantum per se, they are resistant against both classes of adversaries.
Keywords
Cite
@article{arxiv.2210.13278,
title = {Unconditional Proofs-of-Work and Other Possibilities of Thermodynamic Cryptography},
author = {Xavier Coiteux-Roy and Stefan Wolf},
journal= {arXiv preprint arXiv:2210.13278},
year = {2022}
}
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6 pages