21
collaborators
2019–2021
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
3 Posters
| Title | Conference | Co-authors |
|---|---|---|
| QuNet: Mobile Free-Space Quantum Communication System | QCRYPT 2021 | Christopher Spiess, Sebastian Toepfer, Sakshi Sharma, Thomas Grafenauer, Roland Lieger, Bernhard Ömer, 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. |
||
| AIT QKD Post Processing and Network Software | QCRYPT 2020 | Oliver Maurhart, Thomas Grafenauer, Michael Hentschel, Bernhard Ömer, Philipp-Sebastian Vogt, Christoph Pacher |
Since 2004 AIT has developed a software suite for QKD post processing and key routing in trusted repeater networks. This software provides a set of building blocks to integrate sifting, error estimation, error correction, confirmation, privacy amplification and information-theoretically secure message authentication. Accompanying the QKD post-processing is the Quantum Point-to-Point Protocol (Q3P) node which enforces information-theoretically secure network peer-to-peer communication for classical applications. We already reported on the support for different DV and CV-QKD protocols, and high-performance error correction using GPUs for terrestrial QKD. Here we will discuss the following new capabilities of the software * a low dependency footprint for future use on satellites, * hibernation of QKD post-processing pipelines and switching between them for key establishment with different ground terminals and satellites, * CoAP interfaces to cover demands of the control and management plane in today’s network environment, and * the port to ARM/FPGA SoC boards. The CoAP interfaces allow rapid scripting of QKD modules or AIT QKD based applications with Python or even Bash. Utilities and tools, as well as a boilerplate setup for QKD module coding projects, also support the creation of new QKD post-processing modules or QKD based user applications. The AIT QKD software is bundled with management tools, partly GUI oriented. The software is available under different license options and AIT welcomes suggestions from academic groups or industry to co-operate. |
||
| AIT QKD Post Processing and Network Software | QCRYPT 2019 | Oliver Maurhart, Christoph Pacher, Michael Hentschel |
Collaborators
| Co-author | Joint talks |
|---|---|
| Christoph Pacher | 3 |
| Bernhard Ömer | 2 |
| Michael Hentschel | 2 |
| Oliver Maurhart | 2 |
| Thomas Grafenauer | 2 |
| Andrej Kržič | 1 |
| Aoife Brady | 1 |
| Christoph Damm | 1 |
| Christopher Spiess | 1 |
| Daniel Rieländer | 1 |
| Fabian Steinlechner | 1 |
| Gregor Sauer | 1 |
| Manuel Warum | 1 |
| Matthias Goy | 1 |
| Philipp-Sebastian Vogt | 1 |
| René Berlich | 1 |
| Roland Lieger | 1 |
| Sakshi Sharma | 1 |
| Sebastian Toepfer | 1 |
| Teresa Kopf | 1 |