0
talks
2
posters
0
committee roles
0
leadership roles
2024–2024
years active
Posters
| Title | Conference | Co-authors |
|---|---|---|
| Continuous-Variable QKD with key rates far above Devetak-Winter | QCRYPT 2024 | Boris Škorić |
Continuous-Variable Quantum Key Distribution (CVQKD) at large distances has such high noise levels that the employed error-correcting codes must have very low rate. In this regime it becomes feasible to implement random-codebook error correction, which is known to perform close to capacity. |
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| Continuous-variable Quantum Position Verification secure against entangled attackers | QCRYPT 2024 | Rene Allerstorfer, Llorenç Escolà-Farràs, Boris Škorić, Florian Speelman |
Motivated by the fact that coherent states may offer practical advantages it was recently shown that a continuous-variable (CV) quantum position verification (QPV) protocol using coherent states could be securely implemented if and only if attackers do not pre-share any entanglement. In the discrete-variable (DV) analogue of that protocol it was shown that modifying how the classical input information is sent from the verifiers to the prover leads to a favourable scaling in the resource requirements for a quantum attack. In this work, we show that similar conclusions can be drawn for CV-QPV. By adding extra classical information of size $n$ to a CV-QPV protocol, we show that the protocol, which uses a coherent state and classical information, remains secure, even if the quantum information travels arbitrarily slow, against attackers who pre-share CV (entangled) states with a linear (in $n$) cutoff at the photon number. We show that the protocol remains secure for certain attenuation and excess noise. |
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Collaborators
| Co-author | Joint talks |
|---|---|
| Boris Škorić | 2 |
| Florian Speelman | 1 |
| Llorenç Escolà-Farràs | 1 |
| Rene Allerstorfer | 1 |