English

Highly integrated quantum key distribution transmitter enabled by silicon photonics

Quantum Physics 2026-07-26 v1

Abstract

Quantum key distribution (QKD) provides information-theoretic security independent of computational assumptions, yet the bulk and cost of current systems hinder large-scale deployment. Although integrated photonic technologies have enabled highly integrated QKD chips, practical QKD transmitters are still predominantly implemented as rack-mounted systems. Here, we demonstrate a highly integrated standalone QKD transmitter that integrates all essential functionalities required for practical QKD operation within a compact platform built around a silicon photonic encoding chip. The transmitter occupies only 167×56×21 mm3167 \times 56 \times 21~\mathrm{mm}^3 (0.2 dm3\sim 0.2~\mathrm{dm}^3), comparable in size to a half-height, half-width PCIe card and more than 30 times smaller in volume than a conventional 1U rack-mounted system. Paired with a conventional discrete-component receiver, it achieves a secure key rate of 219.1 kbps over 51.3 km of standard single-mode fiber, with performance comparable to that of conventional discrete-component implementations. This work bridges the gap between photonic chip integration and deployable QKD hardware, marking an important step toward transitioning QKD transmitters from conventional rack-mounted equipment to compact board-level platforms.

Cite

@article{arxiv.2607.23413,
  title  = {Highly integrated quantum key distribution transmitter enabled by silicon photonics},
  author = {Rende Liu and Yan-Lin Tang and Cheng-Guang Dong and Yan Ma and Guo-Qing Liu and Zhi-Lin Xie and Shuai Li and Mi Zou and Hao Liang and Shi-biao Tang},
  journal= {arXiv preprint arXiv:2607.23413},
  year   = {2026}
}