activity
20242026
most citedIntensity correlations in decoy-state BB84 quantum key distribution systems

7 citations · 11 across the 4 of their papers we have counts for

collaborators

8 papers

quant-ph2026

Pulsed laser attack at 1061 nm potentially compromises quantum key distribution

Anastasiya Ponosova, Irina Zhluktova, Daria Ruzhitskaya +6

Quantum key distribution systems offer cryptographic security, provided that all their components are thoroughly characterised. However, certain components might be vulnerable to a…

quant-ph20267 cited

Intensity correlations in decoy-state BB84 quantum key distribution systems

Daniil Trefilov, Xoel Sixto, Víctor Zapatero +3

The decoy-state method is a prominent approach to enhance the performance of quantum key distribution (QKD) systems that operate with weak coherent laser sources. Due to the limite…

quant-ph20264 cited

Wide-spectrum security of quantum key distribution

Hao Tan, Mikhail Petrov, Weiyang Zhang +5

Implementations of quantum key distribution (QKD) need vulnerability assessment against loopholes in their optical scheme. Most of the optical attacks involve injecting or receivin…

quant-ph2026

Robustness of fiber-optic attenuators to 1061-nm sub-nanosecond pulsed laser radiation in quantum key distribution systems

Daria Ruzhitskaya, Irina Zhluktova, Anastasiya Ponosova +10

The security of quantum key distribution (QKD) systems relies on the physical integrity of their components. While laser-damage attacks (LDAs) using high-power continuous-wave (cw)…

quant-ph2025

Spectral side channels in quantum key distribution under laser damage

Binwu Gao, Junxuan Liu, Ekaterina Borisova +8

In the transmitter of a quantum key distribution (QKD) system, a dense wavelength-division multiplexer (DWDM) is typically used to combine quantum and synchronization signals and i…

quant-ph2025

Fiber-optic power limiter device based on carbon nanotubes

Ekaterina Borisova, Anastasiya Ponosova, Natalia Arutyunyan +4

We experimentally demonstrate a power limiter based on single-walled carbon nanotubes dispersed in a polymer matrix. This simple fiber-optic device permanently increases its attenu…