27
collaborators
2019–2024
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
2 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| High-speed Heterodyne-based Quantum Random Number Generator on a Chip | QCRYPT 2024 | regular | Tommaso Bertapelle, Marco Avesani, Alberto Montanaro, Francesco Testa, Gabriele De Angelis, Giampiero Contestabile, Giuseppe Vallone, Paolo Villoresi |
A wide range of applications require, by hypothesis, to have access to a private and genuine random source. Quantum Random Number Generators (QRNGs) are currently the sole technology capable of producing true randomness. Nevertheless, other factors must be considered when addressing real-world use cases, and the bulkiness of current implementations significantly limits their adoption. In this work, we present a high-performance source-device independent QRNG leveraging a custom-made integrated silicon photonic chip. The proposed scheme exploits the properties of a heterodyne receiver to enhance security and integration to promote spatial footprint reduction while simplifying its implementation. Such characteristics could represent a significant advancement toward the development of generators better suited to meet the demands of portable and space applications. Indeed, the system can deliver secure random numbers at a rate greater than 20 Gbps with a reduced encumbrance. |
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| QCoSOne: A chip-based prototype for daylight free-space QKD at telecom wavelength for future satellite optical payloads | QCRYPT 2019 | regular | Marco Avesani, Luca Calderaro, Matteo Schiavon, Costantino Agnesi, Alberto Santamato, Andrea Stanco, Mujtaba Zahidy, Alessia Scriminich, Giulio Foletto, Giampiero Contestabile, Marco Chiesa, Alessandro Nottola, Davide Rotta, Stefano Tirelli, Alberto Montanaro, Marco Romagnoli, Vito Sorianello, Daniele Dequal, Giuseppe Bianco, Claudia Facchinetti, Alberto Tuozzi, Francesco Vedovato, Giuseppe Vallone, Paolo Villoresi |
Space-based quantum key distribution would allow, in the near future, secure communications be- tween parties over continental distances, complementing short-range fiber-based quantum networks. However, further demonstrations of daylight operations over free-space channels and the full compatibility with the telecom-based fiber infrastructure are still necessary. Here we present the prototype for daylight QKD at 1550 nm we developed as a demonstrator for application of QKD both on ground and in Space. Our QKD source, exploiting integrated silicon photonics technology, allows to reach a QBER of 1% during the field-test performed over a 145 m link, and represents a promising resource to design quantum optical payloads to be implemented in future satellite missions. |
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Collaborators
| Co-author | Joint talks |
|---|---|
| Alberto Montanaro | 2 |
| Giampiero Contestabile | 2 |
| Giuseppe Vallone | 2 |
| Marco Avesani | 2 |
| Paolo Villoresi | 2 |
| Alberto Santamato | 1 |
| Alberto Tuozzi | 1 |
| Alessandro Nottola | 1 |
| Alessia Scriminich | 1 |
| Andrea Stanco | 1 |
| Claudia Facchinetti | 1 |
| Costantino Agnesi | 1 |
| Daniele Dequal | 1 |
| Davide Rotta | 1 |
| Francesco Testa | 1 |
| Francesco Vedovato | 1 |
| Gabriele De Angelis | 1 |
| Giulio Foletto | 1 |
| Giuseppe Bianco | 1 |
| Luca Calderaro | 1 |