English

Simplified intensity- and phase-modulated transmitter for modulator-free decoy-state quantum key distribution

Quantum Physics 2023-04-04 v1

Abstract

Quantum key distribution (QKD) allows secret key exchange between two users with unconditional security. For QKD to be widely deployed, low cost and compactness are crucial requirements alongside high performance. Currently, the majority of QKD systems demonstrated rely on bulk intensity and phase modulators to generate optical pulses with precisely defined amplitude and relative phase difference i.e., to encode information as signal states and decoy states. However, these modulators are expensive and bulky, thereby limiting the compactness of QKD systems. Here, we present and experimentally demonstrate a novel optical transmitter design to overcome this disadvantage by generating intensity- and phase-tunable pulses at GHz clock speeds. Our design removes the need for bulk modulators by employing directly modulated lasers in combination with optical injection locking and coherent interference. This scheme is, therefore, well suited to miniaturization and photonic integration, and we implement a proof-of-principle QKD demonstration to highlight potential applications.

Keywords

Cite

@article{arxiv.2304.00574,
  title  = {Simplified intensity- and phase-modulated transmitter for modulator-free decoy-state quantum key distribution},
  author = {Y. S. Lo and R. I. Woodward and N. Walk and M. Lucamarini and I. De Marco and T. K. Paraïso and M. Pittaluga and T. Roger and M. Sanzaro and Z. L. Yuan and A. J. Shields},
  journal= {arXiv preprint arXiv:2304.00574},
  year   = {2023}
}
R2 v1 2026-06-28T09:45:22.455Z