Automatic Configuration Protocols for Optical Quantum Networks

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Taherkhani, Amin, Todd, Andrew, Teramoto, Kentaro, Van Meter, Rodney, Nagayama, Shota
Natura: Preprint
Pubblicazione: 2025
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866918114994683904
author Taherkhani, Amin
Todd, Andrew
Teramoto, Kentaro
Van Meter, Rodney
Nagayama, Shota
author_facet Taherkhani, Amin
Todd, Andrew
Teramoto, Kentaro
Van Meter, Rodney
Nagayama, Shota
contents Before quantum networks can scale up to practical sizes, there are many deployment and configuration tasks that must be automated. Currently, quantum networking testbeds are largely manually configured: network nodes are constructed out of a combination of free-space and fiber optics before being connected to shared single-photon detectors, time-to-digital converters, and optical switches. Information about these connections must be tracked manually; mislabeling may result in experimental failure and protracted debugging sessions. In this paper, we propose protocols and algorithms to automate two such manual processes. First, we address the problem of automatically identifying connections between quantum network nodes and time-to-digital converters. Then, we turn to the more complex challenge of identifying the nodes attached to a quantum network's optical switches. Implementation of these protocols will help enable the development of other protocols necessary for quantum networks, such as network topology discovery, link quality monitoring, resource naming, and routing. We intend for this paper to serve as a roadmap for near-term implementation.
format Preprint
id arxiv_https___arxiv_org_abs_2504_19613
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Automatic Configuration Protocols for Optical Quantum Networks
Taherkhani, Amin
Todd, Andrew
Teramoto, Kentaro
Van Meter, Rodney
Nagayama, Shota
Quantum Physics
Networking and Internet Architecture
C.2.2
Before quantum networks can scale up to practical sizes, there are many deployment and configuration tasks that must be automated. Currently, quantum networking testbeds are largely manually configured: network nodes are constructed out of a combination of free-space and fiber optics before being connected to shared single-photon detectors, time-to-digital converters, and optical switches. Information about these connections must be tracked manually; mislabeling may result in experimental failure and protracted debugging sessions. In this paper, we propose protocols and algorithms to automate two such manual processes. First, we address the problem of automatically identifying connections between quantum network nodes and time-to-digital converters. Then, we turn to the more complex challenge of identifying the nodes attached to a quantum network's optical switches. Implementation of these protocols will help enable the development of other protocols necessary for quantum networks, such as network topology discovery, link quality monitoring, resource naming, and routing. We intend for this paper to serve as a roadmap for near-term implementation.
title Automatic Configuration Protocols for Optical Quantum Networks
topic Quantum Physics
Networking and Internet Architecture
C.2.2
url https://arxiv.org/abs/2504.19613