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New article: "Making the cut: two methods for breaking down a quantum algorithm"

26/5/2023

 
The article  Making the cut: two methods for breaking down a quantum algorithm, by M. Murça, D. Magano, Y. Omar, is available at: arXiv:2305.10485 (2023). Get PDF

New article: " Towards Quantum Simulation of Bound States Scattering"

12/5/2023

 
The article  Towards Quantum Simulation of Bound States Scattering, by M. Turco, G. M. Quinta, J. Seixas, Y. Omar, is available at: arXiv:2305.07692 (2023). Get PDF.

New article: "Low-Dissipation Data Bus via Coherent Quantum Dynamics"

5/4/2023

 
The article  Low-Dissipation Data Bus via Coherent Quantum Dynamics, by D. Lewis, J. P. Moutinho, A. Costa, Y. Omar, S. Bose, is available at: arXiv:2304.02391 (2023). Get PDF

Article on "Propagating Quantum Microwaves: Towards Applications in Communication and Sensing" published in Quantum Science and Technology

28/3/2023

 
The article Propagating Quantum Microwaves: Towards Applications in Communication and Sensing, by M. Casariego, E. Z. Cruzeiro, S. Gherardini, T. Gonzalez-Raya, R. André, G. Frazão, G. Catto, M. Möttönen, D. Datta, K. Viisanen, J. Govenius, M. Prunnila, K. Tuominen, M. Reichert, M. Renger, K. G. Fedorov, F. Deppe, H. van der Vliet, A. J. Matthews, Y. Fernández, R. Assouly, R. Dassonneville, B. Huard, M. Sanz, Y. Omar, has been published in: Quantum Science and Technology 8,023001 (2023). Get PDF

Article "Propagating Quantum Microwaves: Towards Applications in Communication and Sensing" to appear in Quantum Science and Technology

10/3/2023

 
The article on Propagating Quantum Microwaves: Towards Applications in Communication and Sensing, by M. Casariego, E. Z. Cruzeiro, S. Gherardini, T. Gonzalez-Raya, R. André, G. Frazão, G. Catto, M. Möttönen, D. Datta, K. Viisanen, J. Govenius, M. Prunnila, K. Tuominen, M. Reichert, M. Renger, K. G. Fedorov, F. Deppe, H. van der Vliet, A. J. Matthews, Y. Fernández, R. Assouly, R. Dassonneville, B. Huard, M. Sanz, Y. Omar has been accepted for publication in Quantum Science and Technology.

Article on "Quantum Link Prediction in Complex Networks" published in PRX Energy

10/3/2023

 
The article Quantum Link Prediction in Complex Networks, by J. P. Moutinho, A. Melo, B. Coutinho, I. A. Kovács, Y. Omar, has been published in: Physical Review A 107, 032605 (2023). Get PDF

Launch of QSNP Project: Quantum Secure Networks Partnership

1/3/2023

 
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The new European Quantum Flagship project in quantum communications will aim to develop and deploy quantum cryptography technology that will permit the ultra-secure transmission of information through the network.
​
Digital communications have been key players in all connectivity advances society has experienced in these last decades. The increasingly astonishing number of devices and systems connected to the global networks and the information that is being transmitted amongst them is an indication that we are indeed in need to protect the information that can be considered sensitive.

We are aware that most networks are public and may be easy targets to attacks by hackers. Therefore, one of the major concerns for all users nowadays is security. There is an imperative need to secure our information as much as possible so no one can have access to it. But many current existing cryptography techniques that are used to secure our information are in fact based on methods that are becoming vulnerable to the constant increase of computer processing capabilities.

March 1st, 2023, has been the official launch of the Quantum Secure Networks Partnership, or QSNP, a new project in the area of quantum communications of the Quantum Flagship. Coordinated by ICREA Prof. at ICFO, Valerio Pruneri, QSNP brings together more than 40 partners from all over Europe, ranging from academia, foundries and RTOs, SMEs and spin-offs, to network and cryptography integrators and telecom operators. In the time span of 3.5 years and with a budget of 25M€, these experts in the field of quantum technologies will seek to fulfil three main goals.

Firstly, they will develop advanced quantum technology for quantum secure communication networks against the ever-increasing power of computers and the sophistication of algorithms, even for quantum computers. That is, they will work on the development and deployment of next generation protocols based on Quantum Key Distribution (QKD) cryptography techniques, that can help reduce the security assumptions needed for the networks, extend the range of secure communication, and search for new functionalities that could beyond these techniques.

Secondly, they will aim to integrate this innovative quantum cryptography technology not only at the component, system and network levels, but also into existing classical telecommunication systems and post-quantum protocols, assuring an additional layer of ultra-secure communications in this hybrid classical-quantum network.

Finally, they will apply all the know-how and capabilities acquired, as well as the technology developed, into different use cases, mainly into delivering critical European technology for government infrastructures such as the European Quantum Communications Infrastructure (EuroQCI). In doing so, they are interested in identifying the potential users, be it authentication, long-term secure storage, critical infrastructure protection, clock synchronization or primitives beyond QKD, in order to provide robust and solutions to their needs. In addition, the project will be a launchpad for future applications, to exploit new capabilities, evaluate new cost/effective features, measure use/integration easiness levels, and explore new sectors where quantum technologies could take over markets that are not being reached by the current technology.

​As the official launch of the project has occurred, the first in person meeting with all the consortium partners will be held at ICFO premises in Barcelona, from 24-25 April, 2023.

Article on "Distributing Multipartite Entanglement over Noisy Quantum Networks" published in Quantum

9/2/2023

 
​The article Distributing Multipartite Entanglement over Noisy Quantum Networks, by L. Bugalho, B. C. Coutinho, F. A. Monteiro Y. Omar, has been published in: Quantum 7, 920 (2023).

QuantHEP Seminar by Zohreh Davoudi  (Department of Physics, University of Maryland)

1/2/2023

 
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New session of the QuantHEP Seminar – Quantum Computation and High-Energy Physics Seminar:
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Title: Toward building a quantum-simulation program for QCD

Speaker: Zohreh Davoudi (Department of Physics, University of Maryland)

Date: Wednesday 8 February 2023

Time: 17h00 Brussels = 16h00 Lisbon = 12h00 New York = etc.

​Venue: To receive the Zoom link, subscribe to the QuantHEP Seminar mailing list and/or the QuantHEP Seminar Google Calendar or iCal.
​

Or, in alternative, watch on the QuantHEP Seminar YouTube channel.

To receive announcements, subscribe to the QuantHEP Seminar mailing list.
​
And follow QuantHEP on Twitter!

For more details, see: https://quanthep-seminar.org/

Article on "Quantum density peak clustering" published in Quantum Machine Intelligence

1/2/2023

 
​The article Quantum density peak clustering, by D. Magano, L. Buffoni, Y. Omar, has been published in: Quantum Machine Intelligence 5, 9 (2023).
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