46
collaborators
2013–2016
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
1 Talk
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Towards a North American QKD Backbone with Certifiable Security | QCRYPT 2015 | regular | Nino Walenta, Sylvain Chuard, Mathias Domergue, Michael Hagerman, Randall Hart, Don Hayford, Raphael Houlmann, Matthieu Legré, Todd McCandlish, Laurent Monat, Alex Morrow, Grégoire Ribordy, Damien Stucki, Maurice Tourville, Patrick Trinkler, Richard Wolterman |
3 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Applicability of a Post-Quantum Signature in a QKD Public Channel | QCRYPT 2016 | Roberto Roscino, Kevin Layat, Bruno Huttner, Grégoire Ribordy |
| A Certifiable Trusted Node QKD Network | QCRYPT 2014 | Nino Walenta, Mathias Domergue, Michael Hagerman, Don Hayford, Matthieu Legré, Todd McCandlish, Laurent Monat, Alex Morrow, Grégoire Ribordy, Damien Stucki, Patrick Trinkler, Richard Wolterman |
| Continuous QKD and data encryption at up to 100 Gbit/s | QCRYPT 2013 | Hugo Zbinden, Nino Walenta, Olivier Guinnard, Raphael Houlmann, Charles Lim Ci Wen, Boris Korzh, Tommaso Lunghi, Nicolas Gisin, Andreas Burg, Jeremy Constantin, Matthieu Legré, Patrick Trinkler, Natalia Kulesza, Gregory Trolliet, Fabien Vannel, Pascal Junod, Olivier Auberson, Yoan Graf, Gilles Curchod, Gilles Habegger, Etienne Messerli, Christopher Portmann, Luca Henzen, Christoph Keller, Christian Pendl, Michael Mühlberghuber, Christoph Roth, Norbert Felber, Frank Gürkaynak, Daniel Schöni, Beat Muheim |
We present the results of the project QCRYPT, a collaborate effort of eight research teams in Switzerland with the ambition to produce a complete and practical fiber based QKD and high speed encryption system. For the QKD part, we put the emphasis on continuous operation with a wavelength multiplexed service channel for synchronization and distillation, efficient hardware real-time distillation, finite key security analysis and frugal authentication. For the secure high-speed encryption of large data volumes, we present a system able to multiplex up to ten 10 Gbit/s Ethernet inputs, pass the 100 Gbit/s data stream through authenticated encryption before transmitting it over an optical fiber to the decryptor. The cipher cores apply and frequently refresh the quantum keys delivered by the QKD system. |
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Collaborators
| Co-author | Joint talks |
|---|---|
| Grégoire Ribordy | 3 |
| Matthieu Legré | 3 |
| Nino Walenta | 3 |
| Patrick Trinkler | 3 |
| Alex Morrow | 2 |
| Damien Stucki | 2 |
| Don Hayford | 2 |
| Laurent Monat | 2 |
| Mathias Domergue | 2 |
| Michael Hagerman | 2 |
| Raphael Houlmann | 2 |
| Richard Wolterman | 2 |
| Todd McCandlish | 2 |
| Andreas Burg | 1 |
| Beat Muheim | 1 |
| Boris Korzh | 1 |
| Bruno Huttner | 1 |
| Charles Lim Ci Wen | 1 |
| Christian Pendl | 1 |
| Christoph Keller | 1 |