25
collaborators
2006–2024
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
1 Talk
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Proof-of-principle test of continuous-variable quantum key distribution in free-space atmospheric channel | QCRYPT 2015 | regular | Vladyslav Usenko, Christian Peuntinger, Ivan Derkach, Bettina Heim, Christoph Marquardt, Gerd Leuchs |
14 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Experimental of multi-user continuous-variable quantum key distribution | QCRYPT 2024 | Adnan A.E. Hajomer, Ivan Derkach, Ulrik Lund Andersen, Vladyslav C.Usenko, Tobias Gehring |
We report the experimental demonstration of multi-user continuous-variable quantum key distribution based on a passive optical network (QPON) that supports se- cure key generation for 5 users simultaneously. This is achieved considering practical PON topology with an 11 km span of access links. |
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| Continuous-variable quantum passive optical network | QCRYPT 2024 | Ivan Derkach, Adnan A.E. Hajomer, Ulrik Lund Andersen, Vladyslav Usenko, Tobias Gehring |
We develop a novel multi-user protocol and report the first continuous-variable quantum passive optical network (CV-QPON), that supports secure key generation for eight users simultaneously. This is achieved considering practical PON topology with an 11 km span of access links. Depending on the trust assumptions about users we reach 1.5 Mbits/s and 2.1 Mbits/s of total network key generation. Novel CV-QPON protocol exploits the multi-user nature of the network allowing to extend the network size and enhance individual keys, thus offering a pathway toward establishing low-cost, high-rate, and scalable quantum access networks using standard telecom technologies that directly benefits from the existing access network infrastructure. |
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| Continuous-variable quantum passive optical networks | TQC 2024 | Ivan Derkach, Adnan A.E. Hajomer, Ulrik Lund Andersen, Vladyslav Usenko, Tobias Gehring |
| Fading channel estimation for free-space continuous-variable secure quantum communication | QCRYPT 2021 | László Ruppert, Christian Peuntinger, Bettina Heim, Kevin Günthner, Vladyslav Usenko, Dominique Elser, Gerd Leuchs, Christoph Marquardt |
We investigate estimation of fluctuating channels and its effect on security of continuous-variable quantum key distribution. We propose a novel estimation scheme which is based on the clusterization of the estimated transmittance data. We show that uncertainty about whether the transmittance is fixed or not results in a lower key rate. However, if the total number of measurements is large, one can obtain using our method a key rate similar to the non-fluctuating channel even for highly fluctuating channels. We also verify our theoretical assumptions using experimental data from an atmospheric quantum channel. Our method is therefore promising for secure quantum communication over strongly fluctuating turbulent atmospheric channels. |
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| Fading channel estimation for free-space continuous-variable secure quantum communication | QCRYPT 2020 | László Ruppert, Christian Peuntinger, Bettina Heim, Kevin Günthner, Vladyslav Usenko, Dominique Elser, Gerd Leuchs, Christoph Marquardt |
We investigate estimation of fluctuating channels and its effect on security of continuous-variable quantum key distribution. We propose a novel estimation scheme which is based on the clusterization of the estimated transmittance data. We show that uncertainty about whether the transmittance is fixed or not results in a lower key rate. However, if the total number of measurements is large, one can obtain using our method a key rate similar to the non-fluctuating channel even for highly fluctuating channels. We also verify our theoretical assumptions using experimental data from an atmospheric quantum channel. Our method is therefore promising for secure quantum communication over strongly fluctuating turbulent atmospheric channels. |
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| Enhanced free-space continuous-variable quantum key distribution | QCRYPT 2018 | Vladyslav Usenko, Ivan Derkach, László Ruppert |
| Towards Macroscopic Quantum Key Distribution | QCRYPT 2016 | Vladyslav Usenko, Kirill Spasibko, László Ruppert, Maria Chekhova, Gerd Leuchs |
| Preventing side-channel leakage in continuous-variable quantum key distribution | QCRYPT 2014 | Ivan Derkach, Vladyslav Usenko |
| Continuous-variable quantum key distribution with multimode entangled states | QCRYPT 2014 | Vladyslav Usenko, László Ruppert |
| Elimination of information leakage in lossy quantum communication channels | QCRYPT 2014 | Christian Scheffmann Jacobsen, Lars Skovgaard Madsen, Vladyslav Usenko, Ulrik Lund Andersen |
| Continuous-variable quantum key distribution with efficient channel estimation for long-distance applications | QCRYPT 2014 | László Ruppert, Vladyslav Usenko |
| Quantum noise eater for a single photonic qubit | QIP 2014 | Miroslav Gavenda, Lucie Celechovska, Miloslav Dušek |
| Squeezing can minimize information leakage in countinuous-variable quantum key distribution | QIP 2014 | Vladyslav Usenko |
| Realization of a minimal disturbance quantum measurement | QIP 2006 | Fabio Sciarrino, M. Ricci, F. De Martini, Ladislav Mišta, X W |
Collaborators
| Co-author | Joint talks |
|---|---|
| Vladyslav Usenko | 12 |
| Ivan Derkach | 6 |
| László Ruppert | 6 |
| Gerd Leuchs | 4 |
| Ulrik Lund Andersen | 4 |
| Adnan A.E. Hajomer | 3 |
| Bettina Heim | 3 |
| Christian Peuntinger | 3 |
| Christoph Marquardt | 3 |
| Tobias Gehring | 3 |
| Dominique Elser | 2 |
| Kevin Günthner | 2 |
| Christian Scheffmann Jacobsen | 1 |
| F. De Martini | 1 |
| Fabio Sciarrino | 1 |
| Kirill Spasibko | 1 |
| Ladislav Mišta | 1 |
| Lars Skovgaard Madsen | 1 |
| Lucie Celechovska | 1 |
| M. Ricci | 1 |