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Academic paper

An optical-fibre-integrated buffer for packet-switched quantum networks

Authors: Daniel Spegel-Lexne, Joakim Argillander, Martin Clason, {\AA}sa Claesson, Kenny Hey Tow, Gustavo Lima, Jo\~ao M. B. Pereira, Guilherme B. XavierPublished: 2026-08-04Paper ID: 2608.04093Category: quant-phLicense: CC BY 4.0

Abstract

Packet-switched quantum networks require buffers that can delay qubit payloads while routing information is read out in real time. Previous approaches have not provided this functionality in a fully fibre-integrated architecture compatible with telecom infrastructure. Here we demonstrate an optical-fibre-integrated buffer, based on a recirculating loop and a fibre storage line, in which the storage time of a polarisation-encoded qubit payload is determined by readout of an attached packet header. The key component behind this achievement is an ultra-low-loss poled fibre phase modulator, which provides fast, polarisation-insensitive switching directly in fibre and allows header and payload to be processed within the buffer. We demonstrate storage and retrieval of polarisation-encoded qubit payloads for storage times up to 47 $\mu$s, with an average quantum bit error rate of 1.8% together with stable operation over several hours. These results establish a practical fibre-based architecture for packet-level quantum network buffering that can easily integrate into the current telecommunication infrastructure opening up new paths for deployment of the quantum internet.

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