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Related papers: Quantum Networks For Open Science

200 papers

This article summarises the current status of classical communication networks and identifies some critical open research challenges that can only be solved by leveraging quantum technologies. By now, the main goal of quantum communication…

Information Theory · Computer Science 2021-06-08 Roberto Ferrara , Riccardo Bassoli , Christian Deppe , Frank H. P. Fitzek , Holger Boche

Quantum networks use principles of quantum physics to create secure communication networks. Moving these networks off the ground using drones, balloons, or satellites could help increase the scalability of these networks. This article…

Quantum Physics · Physics 2026-02-24 Nitin Jha , Abhishek Parakh

Reliable and efficient functioning of a quantum network depends on identifying and mitigating security risks originating from within and outside the network. We aim to construct a comprehensive framework for developing and assessing secure…

Quantum Physics · Physics 2021-09-30 Salini Karuvade , Barry C. Sanders

The quantum internet is envisioned as the ultimate stage of the quantum revolution, which surpasses its classical counterpart in various aspects, such as the efficiency of data transmission, the security of network services, and the…

Quantum Physics · Physics 2023-07-31 Kun Fang , Jingtian Zhao , Xiufan Li , Yifei Li , Runyao Duan

Quantum communications bring a paradigm change in internet security by using quantum resources to establish secure keys between parties. Present-day quantum communications networks are mainly point-to-point and use trusted nodes and key…

Quantum Physics · Physics 2024-01-18 S. Suciu , G. A. Bulzan , T. A. Isdraila , A. M. Palici , S. Ataman , C. Kusko , R. Ionicioiu

Report of the first workshop to identify approaches and techniques in the domain of quantum sensing that can be utilized by future High Energy Physics applications to further the scientific goals of High Energy Physics.

High Energy Physics - Experiment · Physics 2018-04-02 Zeeshan Ahmed , Yuri Alexeev , Giorgio Apollinari , Asimina Arvanitaki , David Awschalom , Karl K. Berggren , Karl Van Bibber , Przemyslaw Bienias , Geoffrey Bodwin , Malcolm Boshier , Daniel Bowring , Davide Braga , Karen Byrum , Gustavo Cancelo , Gianpaolo Carosi , Tom Cecil , Clarence Chang , Mattia Checchin , Sergei Chekanov , Aaron Chou , Aashish Clerk , Ian Cloet , Michael Crisler , Marcel Demarteau , Ranjan Dharmapalan , Matthew Dietrich , Junjia Ding , Zelimir Djurcic , John Doyle , James Fast , Michael Fazio , Peter Fierlinger , Hal Finkel , Patrick Fox , Gerald Gabrielse , Andrei Gaponenko , Maurice Garcia-Sciveres , Andrew Geraci , Jeffrey Guest , Supratik Guha , Salman Habib , Ron Harnik , Amr Helmy , Yuekun Heng , Jason Henning , Joseph Heremans , Phay Ho , Jason Hogan , Johannes Hubmayr , David Hume , Kent Irwin , Cynthia Jenks , Nick Karonis , Raj Kettimuthu , Derek Kimball , Jonathan King , Eve Kovacs , Richard Kriske , Donna Kubik , Akito Kusaka , Benjamin Lawrie , Konrad Lehnert , Paul Lett , Jonathan Lewis , Pavel Lougovski , Larry Lurio , Xuedan Ma , Edward May , Petra Merkel , Jessica Metcalfe , Antonino Miceli , Misun Min , Sandeep Miryala , John Mitchell , Vesna Mitrovic , Holger Mueller , Sae Woo Nam , Hogan Nguyen , Howard Nicholson , Andrei Nomerotski , Michael Norman , Kevin O'Brien , Roger O'Brient , Umeshkumar Patel , Bjoern Penning , Sergey Perverzev , Nicholas Peters , Raphael Pooser , Chrystian Posada , James Proudfoot , Tenzin Rabga , Tijana Rajh , Sergio Rescia , Alexander Romanenko , Roger Rusack , Monika Schleier-Smith , Keith Schwab , Julie Segal , Ian Shipsey , Erik Shirokoff , Andrew Sonnenschein , Valerie Taylor , Robert Tschirhart , Chris Tully , David Underwood , Vladan Vuletic , Robert Wagner , Gensheng Wang , Harry Weerts , Nathan Woollett , Junqi Xie , Volodymyr Yefremenko , John Zasadzinski , Jinlong Zhang , Xufeng Zhang , Vishnu Zutshi

A future quantum network will consist of quantum processors that are connected by quantum channels, just like conventional computers are wired up to form the Internet. In contrast to classical devices, however, the entanglement and…

Quantum Physics · Physics 2022-12-28 Andreas Reiserer

Just as classical information technology rests on a foundation built of interconnected information-processing systems, quantum information technology (QIT) must do the same. A critical component of such systems is the interconnect, a device…

With the overwhelming success in the field of quantum information in the last decades, the "quest" for a Quantum Neural Network (QNN) model began in order to combine quantum computing with the striking properties of neural computing. This…

Quantum Physics · Physics 2014-09-01 M. Schuld , I. Sinayskiy , F. Petruccione

This paper is intended to be a pedagogical introduction to quantum Bayesian networks (QB nets), as I personally use them to represent mixed states (i.e., density matrices, and open quantum systems). A special effort is made to make contact…

Quantum Physics · Physics 2012-04-10 Robert R. Tucci

The realization of the Quantum Internet promises transformative capabilities in secure communication, distributed quantum computing, and high-precision metrology. However, transitioning from laboratory experiments to a scalable,…

Networking and Internet Architecture · Computer Science 2026-04-03 Athanasios Gkelias , Felix T. A. Burt , Kin K. Leung

The evolution of quantum computing technologies has been advancing at a steady pace in the recent years, and the current trend suggests that it will become available at scale for commercial purposes in the near future. The acceleration can…

Quantum Physics · Physics 2022-08-29 Claudio Cicconetti , Marco Conti , Andrea Passarella

The absence of a common framework for benchmarking quantum networks is an obstacle to comparing the capabilities of different quantum networks. We propose a general framework for quantifying the performance of a quantum network, which is…

Quantum Physics · Physics 2022-10-20 Yuan Lee , Wenhan Dai , Don Towsley , Dirk Englund

In the rapidly evolving field of quantum computing, tensor networks serve as an important tool due to their multifaceted utility. In this paper, we review the diverse applications of tensor networks and show that they are an important…

The intense growth of quantum computation and communication allows the development of advanced solutions and services. Networked quantum services are provided for the users via quantum computers and quantum networking. Here, we review the…

Quantum Physics · Physics 2025-05-30 Laszlo Gyongyosi , Sandor Imre

The future Quantum Internet is expected to be based on a hybrid architecture with core quantum transport capabilities complemented by conventional networking.Practical and foundational considerations indicate the need for conventional…

As quantum internet technologies develop, the need for simulation software and education for quantum internet rises. QuNetSim aims to fill this need. QuNetSim is a Python software framework that can be used to simulate quantum networks up…

Quantum Physics · Physics 2022-09-13 Stephen DiAdamo , Janis Nötzel , Benjamin Zanger , Mehmet Mert Beşe

The possibility of quantum computing has been proposed decades ago, at least as far back as the 1980s, and distributed quantum computing has been studied around two decades ago. Recent times have seen experimental successes and advances in…

Distributed, Parallel, and Cluster Computing · Computer Science 2022-08-25 Seng W. Loke

In this invited paper, the authors discuss the exponential computing speed-up achievable by interconnecting quantum computers through a quantum internet. They also identify key future research challenges and open problems for quantum…

Quantum Physics · Physics 2020-01-14 Marcello Caleffi , Angela Sara Cacciapuoti , Giuseppe Bianchi

With the rapid development of quantum information and technology in recent years, the construction of quantum internet for interconnecting all kinds of quantum devices, such as quantum processors and sensors, will be the next trend for…

Quantum Physics · Physics 2022-08-09 Hao Zhang , Yuan Li , Chen Zhang , Tao Huang