PIETRI Yoann
Team : QI
Arrival date : 09/15/2021
- Sorbonne Université - LIP6
Boîte courrier 169
Couloir 25-26, Étage 1, Bureau 103
4 place Jussieu
75252 PARIS CEDEX 05
FRANCE
Tel: +33 1 44 27 70 29, Yoann.Pietri (at) nulllip6.fr
https://lip6.fr/Yoann.Pietri
Supervision : Eleni DIAMANTI
Co-supervision : RHOUNI Amine
System integration of high-performance continuous-variable quantum key distribution
The thesis is situated in the field of quantum information and in particular quantum cryptography. A central application in this field is quantum key distribution (QKD), which allows two parties to share a secret key that can be subsequently used for message exchange, even in the presence of eavesdroppers with unlimited power. This is impossible by classical means. Continuous-variable (CV) QKD, where the key information is encoded on the quadratures of the electromagnetic field, is particularly appealing from a practical point of view in that it only requires off-the-shelf telecom components for their implementation as our group has previously shown in long-distance fibre-optic experiments. The current focus is on the photonic and network integration of such systems. In this doctoral project, we will address challenges that are found on the way to the development of advanced cost-effective telecom network integrated CV-QKD systems that are ready to operate in a deployed optical fibre environment. These include the conception and implementation of solutions for a system operation in the so-called local Local Oscillator configuration, with suitable modulation schemes (and associated security proofs), as well as with adapted high-speed electronics. The thesis work will also include the characterization of photonic integrated CV-QKD transmitter and receiver chips on both the silicon and indium phosphide platforms, and their use for secret key generation. This will be crucial for future scalable solutions for QKD systems. The deployment of the developed systems in dedicated optical fibre links that will be part of the Paris quantum communication testbed currently under development and the demonstration of specific use cases will also be pursued in this thesis
2021-2024 Publications
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2024
- R. Yehia, Y. Piétri, C. Pascual‑García, P. Lefebvre, F. Centrone : “Energetic Analysis of Emerging Quantum Communication Protocols”, (2024)
- Y. Piétri : “QOSST: An Open Source Software for Continuous-Variable Quantum Key Distribution”, Workshop Synchronisation de précision et réseaux, Villetaneuse, France (2024)
- H. Huang, Y. Jaouën, N. Fabre, R. Alléaume, J.‑S. Pegon, Th. Camus, M. Zuber, J.‑Ch. Faugère, P.‑E. Verdier, B. Lacour, M. Gautier, Th. Rivera, Y. Piétri, M. Schiavon, A. Rhouni, E. Diamanti : “Post-Quantum Cryptographically-Secured Trusted Node for Quantum Key Distribution in a Deployed Network”, QCRYPT 2024 - 14th International Conference on Quantum Cryptography, Vigo, Spain (2024)
- V. Yacoub, Y. Piétri, D. Markham, U. Chabaud, E. Diamanti : “Towards an Experimental Implementation of Efficient Verification of Boson Sampling”, 6th Seefeld Workshop on Quantum Information, Seefeld, Austria (2024)
- Y. Piétri, M. Schiavon, V. Marulanda Acosta, B. Gouraud, L. Vidarte, Ph. Grangier, A. Rhouni, E. Diamanti : “QOSST: A Highly Modular Open Source Platform for Continuous Variable Quantum Key Distribution Applications”, Quantum 2.0 Conference and Exhibition, Rotterdam, Netherlands, pp. qth4b.4, (Optica Publishing Group), (ISBN: 978-1-55752-518-5) (2024)
- Y. Piétri, M. Schiavon, V. Marulanda Acosta, B. Gouraud, L. Vidarte, Ph. Grangier, A. Rhouni, E. Diamanti : “QOSST: A Highly-Modular Open Source Platform for Experimental Continuous-Variable Quantum Key Distribution”, (2024)
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2023
- Y. Piétri, M. Schiavon, L. Vidarte, V. Acosta, Ph. Grangier, A. Rhouni, E. Diamanti : “Experimental Demonstration of Continuous-Variable Quantum Key Distribution with a Photonic Integrated Receiver and Modular Software”, 1st colloquium GDR TeQ "Quantum Technologies", Montpellier, France (2023)
- Y. Piétri, L. Vidarte, M. Schiavon, L. Vivien, Ph. Grangier, A. Rhouni, E. Diamanti : “Experimental demonstration of Continuous-Variable Quantum Key Distribution with a silicon photonics integrated receiver”, (2023)
- M. Schiavon, Y. Piétri, L. Vidarte, D. Fruleux, M. Huguenot, B. Gouraud, A. Rhouni, Ph. Grangier, E. Diamanti : “High-speed continuous-variable quantum key distribution with advanced digital signal processing”, 2023 23rd International Conference on Transparent Optical Networks (ICTON), Bucharest, Romania, pp. 1-6, (IEEE), (ISBN: 979-8-3503-0303-2) (2023)
- J. Aldama, S. Sarmiento, S. Etcheverry, I. López Grande, L. Trigo Vidarte, L. Castelvero, A. Hinojosa, T. Beckerwerth, Y. Piétri, A. Rhouni, E. Diamanti, V. Pruneri : “InP-based CV-QKD PIC Transmitter”, Optical Fiber Communication Conference (OFC) 2023, San Diego, California, United States, pp. m1i.3, (Optica Publishing Group), (ISBN: 978-1-957171-18-0) (2023)
- Y. Piétri, L. Trigo Vidarte, M. Schiavon, Ph. Grangier, A. Rhouni, E. Diamanti : “CV-QKD Receiver Platform Based On A Silicon Photonic Integrated Circuit”, Optical Fiber Communication Conference (OFC) 2023, Technical Digest Series, San Diego, CA, United States, pp. m1i.2, (Optica Publishing Group), (ISBN: 978-1-957171-18-0) (2023)
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2022
- Y. Piétri, L. Trigo Vidarte, M. Schiavon, Ph. Grangier, A. Rhouni, E. Diamanti : “CV-QKD Receiver Platform Based On A Silicon Photonic Chip”, 13th colloquium on Quantum Engineering, Fundamental Aspects to Applications, Palaiseau, France (2022)
- Y. Piétri, L. Trigo Vidarte, M. Schiavon, Ph. Grangier, A. Rhouni, E. Diamanti : “A Versatile PIC-based CV-QKD receiver”, International Conference on Integrated Quantum Photonics, Lyngby, Denmark (2022)
- Y. Piétri, L. Trigo Vidarte, M. Schiavon, Ph. Grangier, A. Rhouni, E. Diamanti : “A Versatile PIC-based CV-QKD Receiver”, QCRYPT, Taiwan, Taiwan, Province of China (2022)
- Y. Piétri, V. Allaire, P.‑E. Verdier, M. Schiavon, J. Belhassen, Th. Rivera, E. Diamanti : “ParisRegionQCI: A Parisian Quantum Network”, QCRYPT, Taiwan, Taiwan, Province of China (2022)
- Y. Piétri, L. Trigo Vidarte, M. Schiavon, Ph. Grangier, A. Rhouni, E. Diamanti : “A Versatile CV-QKD system with a PIC-based receiver”, International Conference on Quantum Communication, Measurement and Computing, Lisbon, Portugal (2022)
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2021
- Y. Piétri, L. Trigo Vidarte, M. Schiavon, Ph. Grangier, A. Rhouni, E. Diamanti : “A versatile and high-performance PIC-based CV-QKD receiver”, 12th colloquium on Quantum Engineering, Fundamental Aspects to Applications, Lyon, France (2021)