Comment on "Resilience of gated avalanche photodiodes against bright illumination attacks in quantum cryptography"
arXiv:1106.3756 · doi:10.1063/1.3658806
Abstract
This is a comment on the publication by Yuan et al. [Appl. Phys. Lett. 98, 231104 (2011); arXiv:1106.2675v1 [quant-ph]].
2 pages
References in corpus (9)
- Hacking commercial quantum cryptography systems by tailored bright illumination
- After-gate attack on a quantum cryptosystem
- Avoiding the Detector Blinding Attack on Quantum Cryptography
- Thermal blinding of gated detectors in quantum cryptography
- Controlling a superconducting nanowire single-photon detector using tailored bright illumination
- Resilience of gated avalanche photodiodes against bright illumination attacks in quantum cryptography
- Superlinear threshold detectors in quantum cryptography
- Reply to "Avoiding the Detector Blinding Attack on Quantum Cryptography"
- Secure gated detection scheme for quantum cryptography
Cited by in corpus (20)
- Secure Quantum Key Distribution
- Controlling a superconducting nanowire single-photon detector using tailored bright illumination
- Long distance measurement-device-independent quantum key distribution with entangled photon sources
- Hacking energy-time entanglement-based systems with classical light
- Critical analysis of the Bennett-Riedel attack on secure cryptographic key distributions via the Kirchhoff-law-Johnson-noise scheme
- Real-time monitoring of single-photon detectors against eavesdropping in quantum key distribution systems
- Errors and their mitigation at the Kirchhoff-law-Johnson-noise secure key exchange
- Information theoretically secure, enhanced Johnson noise based key distribution over the smart grid with switched filters
- Current and voltage based bit errors and their combined mitigation for the Kirchhoff-law-Johnson-noise secure key exchange
- Optimised quantum hacking of superconducting nanowire single-photon detectors
- Hacking the quantum key distribution system by exploiting the avalanche transition region of single photon detectors
- Controlling single-photon detector ID210 with bright light
- Robust countermeasure against detector control attack in practical quantum key distribution system
- Secure detection in quantum key distribution by real-time calibration of receiver
- Safeguarding Quantum Key Distribution through Detection Randomization
- AC Loop Current Attacks Against The KLJN Secure Key Exchange Scheme
- Reply to "Comment on `Resilience of gated avalanche photodiodes against bright illumination attacks in quantum cryptography'"
- Random Number Generator Attack against the Kirchhoff-Law-Johnson-Noise Secure Key Exchange Protocol
- Information theoretic security by the laws of classical physics
- Nonlinearity Attack against the Kirchhoff-Law-Johnson-Noise (KLJN) Secure Key Exchange Protocol