Universal blind quantum computing allows users with minimal quantum resources to delegate a quantum computation to a remote quantum server, while keeping intrinsically hidden input, algorithm, and outcome. State-of-art experimental demonstrations of such a protocol have only involved one client. However, an increasing number of multi-party algorithms, e.g. federated machine learning, require the collaboration of multiple clients to carry out a given joint computation. In this work, we propose and experimentally demonstrate a lightweight multi-client blind quantum computation protocol based on a recently proposed linear quantum network configuration (Qline). Our protocol originality resides in three main strengths: scalability, since we eliminate the need for each client to have its own trusted source or measurement device, low-loss, by optimizing the orchestration of classical communication between each client and server through fast classical electronic control, and compatibility with distributed architectures while remaining intact even against correlated attacks of server nodes and malicious clients.

Multi-client distributed blind quantum computation with the Qline architecture / Polacchi, Beatrice; Leichtle, Dominik; Limongi, Leonardo; Carvacho, Gonzalo; Milani, Giorgio; Spagnolo, Nicolo'; Kaplan, Marc; Sciarrino, Fabio; Kashefi, Elham. - In: NATURE COMMUNICATIONS. - ISSN 2041-1723. - 14:1(2023), pp. 1-8. [10.1038/s41467-023-43617-0]

Multi-client distributed blind quantum computation with the Qline architecture

Beatrice Polacchi;Leonardo Limongi;Gonzalo Carvacho;Giorgio Milani;Nicolo' Spagnolo;Fabio Sciarrino
;
2023

Abstract

Universal blind quantum computing allows users with minimal quantum resources to delegate a quantum computation to a remote quantum server, while keeping intrinsically hidden input, algorithm, and outcome. State-of-art experimental demonstrations of such a protocol have only involved one client. However, an increasing number of multi-party algorithms, e.g. federated machine learning, require the collaboration of multiple clients to carry out a given joint computation. In this work, we propose and experimentally demonstrate a lightweight multi-client blind quantum computation protocol based on a recently proposed linear quantum network configuration (Qline). Our protocol originality resides in three main strengths: scalability, since we eliminate the need for each client to have its own trusted source or measurement device, low-loss, by optimizing the orchestration of classical communication between each client and server through fast classical electronic control, and compatibility with distributed architectures while remaining intact even against correlated attacks of server nodes and malicious clients.
2023
physics; quantum physics; quantum optics; quantum information; quantum computing; photonics
01 Pubblicazione su rivista::01a Articolo in rivista
Multi-client distributed blind quantum computation with the Qline architecture / Polacchi, Beatrice; Leichtle, Dominik; Limongi, Leonardo; Carvacho, Gonzalo; Milani, Giorgio; Spagnolo, Nicolo'; Kaplan, Marc; Sciarrino, Fabio; Kashefi, Elham. - In: NATURE COMMUNICATIONS. - ISSN 2041-1723. - 14:1(2023), pp. 1-8. [10.1038/s41467-023-43617-0]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1692359
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