38
collaborators
2021–2024
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
2 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Composable discrete-modulated continuous-variable QKD and its application to urban atmospheric channels | QCRYPT 2024 | regular | Kevin Jaksch, Thomas Dirmeier, Jan Schreck, Yannick Weiser, Stefan Richter, Ömer Bayraktar, Bastian Hacker, Conrad Rößler, Imran Khan, Andrej Kržič, Markus Rothe, Markus Leipe, Nico Döll, Matthias Goy, Stefan Petscharning, Thomas Grafenauer, Bernhard Ömer, Christoph Pacher, Florian Kanitschar, Twesh Upadhyaya, Jie Lin, Norbert Lütkenhaus, Gerd Leuchs, Christoph Marquardt |
In our work, we developed an optical CVQKD system that uses polarization-based QPSK modulation designed for atmospheric quantum communication and a corresponding post-processing pipeline including error correction and privacy amplification. In a first laboratory experiment, we applied the security statement of a recently published security proof to calculate composable key rates with a total security parameter of ε = 1e-10 in the finite size regime against i.i.d. collective attacks. We also used the post-processing pipeline to study the effect of error correction and frame errors on the actual key extraction in a finite-size system – finding that the common approach of going to high frame errors to increase the ECC efficiency β does not optimize the extractable key length.Furthermore, we deployed the system over an ad-hoc atmospheric channel of 1.7 km in Mai 2023 in the city of Jena, Germany. In a first proof-of-principle study, we were able to apply the full optical and post-processing pipeline to extract pseudo-asymptotic keys and discuss the further steps necessary to move the system to the finite-size regime. To the best of our knowledge, this is the first CVQKD demonstration over a real atmospheric channel combining both the new class of DMCVQKD security proofs without Gaussian optimality and error correction steps. |
|||
| Towards practical metropolitan free-space quantum key distribution networks | QCRYPT 2022 | regular | Andrej Kržič, Uday Chandrashekara, Sakshi Sharma, Matthias Goy, Fabian Steinlechner |
1 Poster
| Title | Conference | Co-authors |
|---|---|---|
| QuNet: Mobile Free-Space Quantum Communication System | QCRYPT 2021 | Sebastian Toepfer, Sakshi Sharma, Thomas Grafenauer, Roland Lieger, Bernhard Ömer, Stefan Petscharnig, Manuel Warum, Christoph Pacher, Andrej Kržič, Gregor Sauer, Matthias Goy, René Berlich, Teresa Kopf, Thomas Peschel, Christoph Damm, Aoife Brady, Daniel Rieländer, Fabian Steinlechner |
We report on a portable quantum communication platform and its application in quantum key distribution over a terrestrial free-space link. We outline on the complete chain from an efficient field-ready entangled photon source and custom-made mirror telescopes with adaptive optics for efficient link transmission to autonomous timing synchronization of detection events and subsequent secure key extraction. |
||
Collaborators
| Co-author | Joint talks |
|---|---|
| Andrej Kržič | 3 |
| Matthias Goy | 3 |
| Bernhard Ömer | 2 |
| Christoph Pacher | 2 |
| Fabian Steinlechner | 2 |
| Sakshi Sharma | 2 |
| Thomas Grafenauer | 2 |
| Aoife Brady | 1 |
| Bastian Hacker | 1 |
| Christoph Damm | 1 |
| Christoph Marquardt | 1 |
| Conrad Rößler | 1 |
| Daniel Rieländer | 1 |
| Florian Kanitschar | 1 |
| Gerd Leuchs | 1 |
| Gregor Sauer | 1 |
| Imran Khan | 1 |
| Jan Schreck | 1 |
| Jie Lin | 1 |
| Kevin Jaksch | 1 |