Inherent security of phase coding quantum key distribution systems against detector blinding attacks
Author:
Publisher
IOP Publishing
Subject
Physics and Astronomy (miscellaneous),Instrumentation
Link
http://stacks.iop.org/1612-202X/15/i=9/a=095203/pdf
Reference20 articles.
1. Hacking commercial quantum cryptography systems by tailored bright illumination
2. Large pulse attack as a method of conventional optical eavesdropping in quantum cryptography
3. Effects of detector efficiency mismatch on security of quantum cryptosystems
4. Controlling passively quenched single photon detectors by bright light
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1. Addressing the Issue of Attacks, Testing, and Information Leakage Channels in Quantum Communication Networks;2023 IEEE Ural-Siberian Conference on Biomedical Engineering, Radioelectronics and Information Technology (USBEREIT);2023-05-15
2. Time Synchronization Protocol for the KLJN Secure Key Exchange Scheme;Fluctuation and Noise Letters;2022-07-27
3. Statistical Random Number Generator Attack Against the Kirchhoff-Law-Johnson-Noise (KLJN) Secure Key Exchange Protocol;Fluctuation and Noise Letters;2022-02-25
4. Hybrid MPPM-BB84 Quantum Key Distribution Over FSO Channel Considering Atmospheric Turbulence and Pointing Errors;IEEE Photonics Journal;2021-12
5. On the structural stability of phase-coded quantum cryptography against detector-blinding attacks;Laser Physics Letters;2021-11-17
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