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September 19, 2002Science2,032 citationsOpen Access

Physical One-Way Functions

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RPRavikanth PappuMIT-Harvard Center for Ultracold AtomsBRBen RechtCalifornia Institute of TechnologyJTJason TaylorCalifornia Institute of Technology

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Abstract

Modern cryptographic practice rests on the use of one-way functions, which are easy to evaluate but difficult to invert. Unfortunately, commonly used one-way functions are either based on unproven conjectures or have known vulnerabilities. We show that instead of relying on number theory, the mesoscopic physics of coherent transport through a disordered medium can be used to allocate and authenticate unique identifiers by physically reducing the medium's microstructure to a fixed-length string of binary digits. These physical one-way functions are inexpensive to fabricate, prohibitively difficult to duplicate, admit no compact mathematical representation, and are intrinsically tamper-resistant. We provide an authentication protocol based on the enormous address space that is a principal characteristic of physical one-way functions.

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Pappu et al. (2002) studied this question.

synapsesocial.com/papers/69dbae3c3e67f8d13868485chttps://doi.org/10.1126/science.1074376
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