Quantum Internet Addressing

Fuente: arXiv
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Main Authors: Cacciapuoti, Angela Sara, Illiano, Jessica, Caleffi, Marcello
Format: Preprint
Published: 2023
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author Cacciapuoti, Angela Sara
Illiano, Jessica
Caleffi, Marcello
author_facet Cacciapuoti, Angela Sara
Illiano, Jessica
Caleffi, Marcello
contents The design of the Quantum Internet protocol stack is at its infancy and early-stage conceptualization. And different heterogeneous proposals are currently available in the literature. The underlying assumption of the existing proposals is that they implicitly mimic classical Internet Protocol design principles: "A name indicates what we seek. An address indicates where it is. A route indicates how to get there''. Hence the network nodes are labeled with classical addresses, constituted by classical bits, and these labels aim at reflecting the node location within the network topology. In this paper, we argue that this twofold assumption of classical and location-aware addressing constitutes a restricting design option, which prevents to scale the quantumness to the network functionalities, beyond simple information encoding/decoding. On the contrary, by embracing quantumness within the node addresses, quantum principles and phenomena could be exploited for enabling a quantum native functioning of the entire communication network. This will unleash the ultimate vision and capabilities of the Quantum Internet.
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id arxiv_https___arxiv_org_abs_2306_05982
institution arXiv
publishDate 2023
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spellingShingle Quantum Internet Addressing
Cacciapuoti, Angela Sara
Illiano, Jessica
Caleffi, Marcello
Quantum Physics
The design of the Quantum Internet protocol stack is at its infancy and early-stage conceptualization. And different heterogeneous proposals are currently available in the literature. The underlying assumption of the existing proposals is that they implicitly mimic classical Internet Protocol design principles: "A name indicates what we seek. An address indicates where it is. A route indicates how to get there''. Hence the network nodes are labeled with classical addresses, constituted by classical bits, and these labels aim at reflecting the node location within the network topology. In this paper, we argue that this twofold assumption of classical and location-aware addressing constitutes a restricting design option, which prevents to scale the quantumness to the network functionalities, beyond simple information encoding/decoding. On the contrary, by embracing quantumness within the node addresses, quantum principles and phenomena could be exploited for enabling a quantum native functioning of the entire communication network. This will unleash the ultimate vision and capabilities of the Quantum Internet.
title Quantum Internet Addressing
topic Quantum Physics
url https://arxiv.org/abs/2306.05982