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High-rate quantum digital signatures network with integrated silicon photonics

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arxiv 2407.07513 v1 pith:S2XO2PPY submitted 2024-07-10 quant-ph

classification quant-ph
keywords networkquantumchipchip-baseddeploymentdigitalexpensivefiber
verification ladder T0 review T1 audit T2 compute T3 formal
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The development of quantum networks is paramount towards practical and secure communications. Quantum digital signatures (QDS) offer an information-theoretically secure solution for ensuring data integrity, authenticity, and non-repudiation, rapidly growing from proof-of-concept to robust demonstrations. However, previous QDS systems relied on expensive and bulky optical equipment, limiting large-scale deployment and reconfigurable networking construction. Here, we introduce and verify a chip-based QDS network, placing the complicated and expensive measurement devices in the central relay while each user needs only a low-cost transmitter. We demonstrate the network with a three-node setup using an integrated encoder chip and decoder chip. By developing a 1-decoy-state one-time universal hash-QDS protocol, we achieve a maximum signature rate of 0.0414 times per second for a 1 Mbit file over fiber distances up to 200 km, surpassing all current state-of-the-art QDS experiments. This study validates the feasibility of chip-based QDS, paving the way for large-scale deployment and integration with existing fiber infrastructure.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Experimental secure entanglement-free quantum remote sensing over 50 km of optical fiber

    quant-ph 2024-12 conditional novelty 6.0 of 10

    First experimental demonstration of entanglement-free secure quantum remote sensing, estimating phase over 50 km optical fiber with a pre-calibration correction.

  2. Improved finite-size analysis for measurement-device-independent quantum digital signature

    quant-ph 2025-01 conditional novelty 5.0 of 10

    Two new parameter estimation models for finite-size analysis of two-decoy MDI-QDS are proposed; numerical simulations show the SMB1 model improves signature rate and transmission distance.

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