Entropy Accumulation under Post-Quantum Cryptographic Assumptions
Ilya Merkulov, Rotem Arnon

TL;DR
This paper develops a modular proof framework for device-independent quantum protocols under post-quantum cryptographic assumptions, enabling simpler security proofs and explicit bounds for future quantum cryptography applications.
Contribution
It introduces a flexible, modular proof technique combining quantum information tools for single-device DI protocols based on post-quantum cryptography.
Findings
Provides a simple, insightful security proof framework.
Derives explicit quantitative bounds for protocol security.
Lays groundwork for future DI quantum cryptography protocols.
Abstract
In device-independent (DI) quantum protocols, the security statements are oblivious to the characterization of the quantum apparatus - they are based solely on the classical interaction with the quantum devices as well as some well-defined assumptions. The most commonly known setup is the so-called non-local one, in which two devices that cannot communicate between themselves present a violation of a Bell inequality. In recent years, a new variant of DI protocols, that requires only a single device, arose. In this novel research avenue, the no-communication assumption is replaced with a computational assumption, namely, that the device cannot solve certain post-quantum cryptographic tasks. The protocols for, e.g., randomness certification, in this setting that have been analyzed in the literature used ad hoc proof techniques and the strength of the achieved results is hard to judge and…
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Taxonomy
TopicsQuantum Mechanics and Applications · Quantum Information and Cryptography · Quantum Computing Algorithms and Architecture
