Distribution of GHz Sequential Time-Bin Entanglement in a Metropolitan Fiber Network

Martin Achleitner (Corresponding author), Alessandro Trenti, Philip Walther, Hannes Huebel

Publications: Contribution to journalArticlePeer Reviewed

Abstract

Efficient generation and high-quality distribution of entanglement is becoming increasingly more relevant in the field of quantum technologies, with important applications such as multiparty computation as well as quantum key distribution (QKD) on the rise. Quantum communication protocols based on entanglement offer an inherent quantum based randomness for key generation and provide in general higher security compared to prepare and measure implementations. Moreover, the future quantum internet will also be based on the distribution of entanglement for securely connecting quantum computers in a network. In this work we show the feasibility of using sequential time-bin entangled states for quantum key distribution in metropolitan networks using off-the-shelf components. The time-bin encoding ensures high fidelity distribution robust against random polarisation fluctuations occuring in optical fibers. Modulated laser pulses in the GHz frequency range are used to generate time-bin entangled photon pairs. The entangled photons are then sent over an about 30 km long (9.5 dB loss) fiber link within the Vienna fiber network, showing high degree of distributed entanglement with a measured 93% quantum visibility.
Original languageEnglish
Article number6400108
Number of pages8
JournalIEEE Journal of Selected Topics in Quantum Electronics
Volume31
Issue number5
DOIs
Publication statusPublished - Sept 2025

Austrian Fields of Science 2012

  • 103025 Quantum mechanics
  • 103026 Quantum optics

Keywords

  • Quantum communication
  • quantum entanglement
  • quantum key distribution
  • quantum networks

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