28
collaborators
2012–2017
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
1 Talk
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Fundamental Finite Key Limits for Information Reconciliation in Quantum Key Distribution | QCRYPT 2014 | regular | Marco Tomamichel, Christoph Pacher, ▸David Elkouss Coronas |
10 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Experimental Validation of an End-to-End QKD Encryption Service in MPLS environments | QCRYPT 2017 | Alejandro Aguado, Victor Lopez, Diego López, Momtchil Peev, Vicente Martin |
| Quantum-Aware Software Defined Networks | QCRYPT 2016 | Alejandro Aguado, Vicente Martin, Diego López, Momtchil Peev, Jose Luis Rosales, Fernando De La Iglesia, Miguel Gomez, Emilio Hugues-Salas, Andrew Lord, Reza Nejabati, Dimitra Simeonidou |
| Rate-Adaptive LDPC-based Key Reconciliation for High Performance Quantum Key Distribution | QCRYPT 2015 | Jose Luis Rosales, Vicente Martin |
| An Information Reconciliation Protocol for Secret-Key Agreement with Small Leakage | QCRYPT 2015 | Christoph Pacher, Philipp Grabenweger, Vicente Martin |
| Efficient Information Reconciliation for Continuous-Variable QKD using Non-Binary Low-Density Parity-Check Codes | QCRYPT 2015 | Christoph Pacher, Jörg Duhme, Fabian Furrer, Vitus Händchen, Tobias Gehring, Reinhard Werner, Roman Schnabel |
| Entanglement Distribution in Quantum Metropolitan Optical Networks | QCRYPT 2014 | Alex Ciurana, Andreas Poppe, Momtchil Peev, Vicente Martin |
| Towards an Optimal Implementation of Cascade | QCRYPT 2014 | Christoph Pacher, Alex Ciurana, Vicente Martin |
| A proposal for a wavelength multiplexed quantum metropolitan area network | QCRYPT 2013 | Alex Ciurana, Nino Walenta, Hugo Zbinden, Momtchil Peev, Andreas Poppe, Vicente Martin |
Quantum Key Distribution (QKD) is maturing quickly. However, the current approaches to its network use require conditions that make it an expensive technology. All the QKD networks deployed to date are designed as a collection of dedicated point-to-point links that use the trusted repeater paradigm. Instead, we propose a novel network model in which QKD systems use simultaneously quantum and classical signals that are wavelength multiplexed over a common communication infrastructure. Signals are transmitted end-to-end within a metropolitan area using passive components. The model resembles a commercial telecom network and takes advantage of existing components, thus allowing for a cost-effective and reliable deployment. |
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| Networks based on QKD and weakly trusted repeaters | QCRYPT 2013 | David Elkouss, Alex Ciurana, Vicente Martin |
We study how to use quantum key distribution (QKD) in common optical network infrastructures and propose a method to overcome its distance limitations. QKD is the first technology offering information theoretic secret-key distribution that relies only on the fundamental principles of quantum physics. Point-to-point QKD devices have reached a mature industrial state; however, these devices are severely limited in distance, since signals at the quantum level (e.g. single photons) are highly affected by the losses in the communication channel and intermediate devices. To overcome this limitation, intermediate nodes (i.e. repeaters) are used. Both, quantum-regime and trusted, classical, repeaters have been proposed in the QKD literature, but only the latter can be implemented in practice. As a novelty, we propose here a new QKD network model based on the use of not fully trusted intermediate nodes, referred as weakly trusted repeaters. This approach forces the attacker to simultaneously break several paths to get access to the exchanged key, thus improving significantly the security of the network. We formalize the model using network codes and provide real scenarios that allow users to exchange secure keys over metropolitan optical networks using only passive components. |
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| Multiplexing QKD systems in Conventional Optical Networks | QCRYPT 2012 | Alex Ciurana, Vicente Martin, Andreas Poppe, M. Soto, Nino Walenta, Hugo Zbinden |
Collaborators
| Co-author | Joint talks |
|---|---|
| Vicente Martin | 9 |
| Alex Ciurana | 5 |
| Christoph Pacher | 4 |
| Momtchil Peev | 4 |
| Andreas Poppe | 3 |
| Alejandro Aguado | 2 |
| Diego López | 2 |
| Hugo Zbinden | 2 |
| Jose Luis Rosales | 2 |
| Nino Walenta | 2 |
| Andrew Lord | 1 |
| David Elkouss | 1 |
| David Elkouss Coronas | 1 |
| Dimitra Simeonidou | 1 |
| Emilio Hugues-Salas | 1 |
| Fabian Furrer | 1 |
| Fernando De La Iglesia | 1 |
| Jörg Duhme | 1 |
| M. Soto | 1 |
| Marco Tomamichel | 1 |