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Quantum Advantage in Cryptography

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arxiv 2206.04078 v2 pith:XYT2CBE3 submitted 2022-06-08 quant-ph cs.CR

classification quant-phcs.CR
keywords quantumcryptographerscryptographycryptanalystscircleinformationschemesthem
verification ladder T0 review T1 audit T2 compute T3 formal
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Ever since its inception, cryptography has been caught in a vicious circle: Cryptographers keep inventing methods to hide information, and cryptanalysts break them, prompting cryptographers to invent even more sophisticated encryption schemes, and so on. But could it be that quantum information technology breaks this circle? At first sight, it looks as if it just lifts the competition between cryptographers and cryptanalysts to the next level. Indeed, quantum computers will render most of today's public key cryptosystems insecure. Nonetheless, there are good reasons to believe that cryptographers will ultimately prevail over cryptanalysts. Quantum cryptography allows us to build communication schemes whose secrecy relies only on the laws of physics and some minimum assumptions about the cryptographic hardware - leaving basically no room for an attack. While we are not yet there, this article provides an overview of the principles and state of the art of quantum cryptography, as well as an assessment of current challenges and prospects for overcoming them.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. A Critical Analysis of Deployed Use Cases for Quantum Key Distribution and Comparison with Post-Quantum Cryptography

    cs.CR 2025-02 conditional novelty 6.0 of 10

    A security analysis of 11 deployed QKD use cases finds that QKD provides little or no advantage over PQC or pre-shared keys in most scenarios, with only OTP-based short-distance links offering a clear benefit.

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